1000 resultados para C–H activation


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The mechanisms by which CD4(+)CD25(+)Foxp3(+) T (Treg) cells regulate effector T cells in a transplantation setting and their in vivo homeostasis still remain to be clarified. Using a mouse adoptive transfer model, we analyzed the in vivo expansion, trafficking, and effector function of alloreactive T cells and donor-specific Treg cells, in response to a full-thickness skin allograft. Fluorescent-labeled CD4(+)CD25(-) and antigen-specific Treg cells were transferred alone or co-injected into syngeneic BALB/c-Nude recipients transplanted with skins from (C57BL/6 x BALB/c) F1 donors. Treg cells divided in vivo, migrated and accumulated in the allograft draining lymph nodes as well as within the graft. The co-transfer of Treg cells did not modify the early activation and homing of CD4(+)CD25(-) T cells in secondary lymphoid organs. However, in the presence of Treg cells, alloreactive CD4(+)CD25(-) T cells produced significantly less IFN-gamma and were present in reduced numbers in the secondary lymphoid organs. Furthermore, time-course studies showed that Treg cells were recruited into the allograft at a very early stage after transplantation and effectively prevented the infiltration of effector T cells. In conclusion, suppression of rejection requires the early recruitment to the site of antigenic challenge of donor-specific Treg cells, which then mainly regulate the effector arm of T cell alloresponses.

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A key aspect of glucose homeostasis is the constant monitoring of blood glucose concentrations by specific glucose sensing units. These sensors, via stimulation of hormone secretion and activation of the autonomic nervous system (ANS), regulate tissue glucose uptake, utilization or production. The best described glucose detection system is that of the pancreatic beta-cells which controls insulin secretion. Secretion of other hormones, in particular glucagon, and activation of the ANS, are regulated by glucose through sensing mechanisms which are much less well characterized. Here I review some of the studies we have performed over the recent years on a mouse model of impaired glucose sensing generated by inactivation of the gene for the glucose transporter GLUT2. This transporter catalyzes glucose uptake by pancreatic beta-cells, the first step in the signaling cascade leading to glucose-stimulated insulin secretion. Inactivation of its gene leads to a loss of glucose sensing and impaired insulin secretion. Transgenic reexpression of the transporter in GLUT2/beta-cells restores their normal secretory function and rescues the mice from early death. As GLUT2 is also expressed in other tissues, these mice were then studied for the presence of other physiological defects due to absence of this transporter. These studies led to the identification of extra-pancreatic, GLUT2-dependent, glucose sensors controlling glucagon secretion and glucose utilization by peripheral tissues, in part through a control of the autonomic nervous system.

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We investigated whether mouse mammary tumor virus (MMTV) favors preactivated or naive B cells as targets for efficient infection. We have demonstrated previously that MMTV activates B cells upon infection. Here, we show that polyclonal activation of B cells leads instead to lower infection levels and attenuated superantigen-specific T-cell responses in vivo. This indicates that naive small resting B cells are the major targets of MMTV infection and that the activation induced by MMTV is sufficient to allow efficient infection.

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The relationship between metabolism and reactive oxygen species (ROS) production by the mitochondria has often been (wrongly) viewed as straightforward, with increased metabolism leading to higher generation of pro-oxidants. Insights into mitochondrial functioning show that oxygen consumption is principally coupled with either energy conversion as ATP or as heat, depending on whether the ATP-synthase or the mitochondrial uncoupling protein 1 (UCP1) is driving respiration. However, these two processes might greatly differ in terms of oxidative costs. We used a cold challenge to investigate the oxidative stress consequences of an increased metabolism achieved either by the activation of an uncoupled mechanism (i.e. UCP1 activity) in the brown adipose tissue (BAT) of wild-type mice or by ATP-dependent muscular shivering thermogenesis in mice deficient for UCP1. Although both mouse strains increased their metabolism by more than twofold when acclimatised for 4 weeks to moderate cold (12°C), only mice deficient for UCP1 suffered from elevated levels of oxidative stress. When exposed to cold, mice deficient for UCP1 showed an increase of 20.2% in plasmatic reactive oxygen metabolites, 81.8% in muscular oxidized glutathione and 47.1% in muscular protein carbonyls. In contrast, there was no evidence of elevated levels of oxidative stress in the plasma, muscles or BAT of wild-type mice exposed to cold despite a drastic increase in BAT activity. Our study demonstrates differing oxidative costs linked to the functioning of two highly metabolically active organs during thermogenesis, and advises careful consideration of mitochondrial functioning when investigating the links between metabolism and oxidative stress.

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Although the contribution of inflammatory processes in the etiology of late-onset Alzheimer's disease (AD) has been suspected for years, most studies were confined to the analysis of cell-mediated immunological reactions thought to represent an epiphenomenon of AD lesion development. Based on the traditional view of the "immunological privilege" of the brain, which excludes a direct access of human immunoglobulins (Ig) to the central nervous system under normal conditions, little attention has been paid to a possible role of humoral immunity in AD pathogenesis. In the first part of this review, we summarize evidences for a blood-brain barrier (BBB) dysfunction in this disorder and critically comment on earlier observations supporting the presence of anti-brain autoantibodies and immunoglobulins (Ig) in AD brains. Current concepts regarding the Ig turnover in the central nervous system and the mechanisms of glial and neuronal Fc receptors activation are also discussed. In the second part, we present new ex vivo and in vitro data suggesting that human immunoglobulins can interact with tau protein and alter both the dynamics and structural organization of microtubules. Subsequent experiments needed to test this new working hypothesis are addressed at the end of the review.

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TLR are evolutionarily conserved molecules that play a key role in the initiation of innate antimicrobial immune responses. Through their influence on dendritic cell maturation, these receptors are also thought to indirectly shape the adaptive immune response. However, no data are currently available regarding both TLR expression and function in human CD8+ T cell subsets. We report that a subpopulation of CD8+ T cells, i.e., effector, but neither naive nor central memory cells, constitutively expresses TLR3. Moreover, the ligation of the receptor by a specific agonist in TLR3-expressing CD8+ T cells increased IFN-gamma secretion induced by TCR-dependent and -independent stimulation, without affecting proliferation or specific cytolytic activity. These results thereby suggest that TLR3 ligands can not only indirectly influence the adaptive immune response through modulation of dendritic cell activation, but also directly increase IFN-gamma production by Ag-specific CD8+ T cells. Altogether, the present work might open new perspectives for the use of TLR ligands as adjuvants for immunotherapy.

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Background: Voltage-gated sodium channels (Nav1.x) are important players in chronic pain. A particular interest has grown in Nav1.7, expressed in nociceptors, since mutations in its gene are associated to two inherited pain syndromes or insensitivity to pain. Rufinamide, a drug used to treat refractory epilepsy such as the Lennox-Gastaut syndrome, has been shown to reduce the number of action potentials in cortical neurons without completely blocking Na channels. Aim: The goal of this study was to investigate the effect of rufinamide on Nav1.7 current. Methods and results: Whole-cell patch clamp experiments were performed using HEK293 cells stably expressing Nav1.7. Rufinamide significantly decreased peak sodium current by 28.3, 21.2 and 12.5% at concentrations of 500, 100 and 50μM respectively (precise EC50 could not be calculated since higher rufinamide concentrations could not be achieved in physiological buffer solution). No significant difference on the V1/2 of voltage-dependence of activation was seen; however a shift in the steady-state inactivation curve was observed (-82.6 mV to -88.8 mV and -81.8 to -87.6 mV for 50 and 100 μM rufinamide respectively, p <0.005). Frequency-dependent inhibition of Nav1.7 was also influenced by the drug. One hundred μM rufinamide reduced the peak sodium current (in % of the peak current taken at the first sweep of a train of 50) from 90.8 to 80.8% (5Hz), 88.7 to 71.8% (10 Hz), 69.1 to 49.2% (25 Hz) and 22.3 to 9.8% (50 Hz) (all p <0.05). Onset of fast inactivation was not influenced by the drug since no difference in the time constant of current decay was observed. Conclusion: In the concentration range of plasma level in human treated for epilepsy, 15 μM, rufinamide only minimally blocks Nav1.7. However, it stabilizes the inactivated state and exerts frequencydependent inhibition of Nav1.7. These pharmacological properties may be of use in reducing ectopic discharges as a causal and symptom related contributor of neuropathic pain syndrome.

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Hemorrhage and resuscitation (H/R) leads to phosphorylation of mitogen-activated stress kinases, an event that is associated with organ damage. Recently, a specific, cell-penetrating, protease-resistant inhibitory peptide of the mitogen-activated protein kinase c-JUN N-terminal kinase (JNK) was developed (D-JNKI-1). Here, using this peptide, we tested if inhibition of JNK protects against organ damage after H/R. Male Sprague-Dawley rats were treated with D-JNKI-1 (11 mg/kg, i.p.) or vehicle. Thirty minutes later, rats were hemorrhaged for 1 h to a MAP of 30 to 35 mmHg and then resuscitated with 60% of the shed blood and twice the shed blood volume as Ringer lactate. Tissues were harvested 2 h later. ANOVA with Tukey post hoc analysis or Kruskal-Wallis ANOVA on ranks, P < 0.05, was considered significant. c-JUN N-terminal kinase inhibition decreased serum alanine aminotransferase activity as a marker of liver injury by 70%, serum creatine kinase activity by 67%, and serum lactate dehydrogenase activity by 60% as compared with vehicle treatment. The histological tissue damage observed was blunted after D-JNKI-1 pretreatment both for necrotic and apoptotic cell death. Hepatic leukocyte infiltration and serum IL-6 levels were largely diminished after D-JNKI-1 pretreatment. The extent of oxidative stress as evaluated by immunohistochemical detection of 4-hydroxynonenal was largely abrogated after JNK inhibition. After JNK inhibition, activation of cJUN after H/R was also reduced. Hemorrhage and resuscitation induces a systemic inflammatory response and leads to end-organ damage. These changes are mediated, at least in part, by JNK. Therefore, JNK inhibition deserves further evaluation as a potential treatment option in patients after resuscitated blood loss.

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Antiretroviral-therapy has dramatically changed the course of HIV infection and HIV-infected (HIV(+)) individuals are becoming more frequently eligible for solid-organ transplantation. However, only scarce data are available on how immunosuppressive (IS) strategies relate to transplantation outcome and immune function. We determined the impact of transplantation and immune-depleting treatment on CD4+ T-cell counts, HIV-, EBV-, and Cytomegalovirus (CMV)-viral loads and virus-specific T-cell immunity in a 1-year prospective cohort of 27 HIV(+) kidney transplant recipients. While the results show an increasing breadth and magnitude of the herpesvirus-specific cytotoxic T-cell (CTL) response over-time, they also revealed a significant depletion of polyfunctional virus-specific CTL in individuals receiving thymoglobulin as a lymphocyte-depleting treatment. The disappearance of polyfunctional CTL was accompanied by virologic EBV-reactivation events, directly linking the absence of specific polyfunctional CTL to viral reactivation. The data provide first insights into the immune-reserve in HIV+ infected transplant recipients and highlight new immunological effects of thymoglobulin treatment. Long-term studies will be needed to assess the clinical risk associated with thymoglobulin treatment, in particular with regards to EBV-associated lymphoproliferative diseases.

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CAP1/Prss8 is a membrane-bound serine protease involved in the regulation of several different effectors, such as the epithelial sodium channel ENaC, the protease-activated receptor PAR2, the tight junction proteins, and the profilaggrin polypeptide. Recently, the V170D and the G54-P57 deletion mutations within the CAP1/Prss8 gene, identified in mouse frizzy (fr) and rat hairless (fr(CR)) animals, respectively, have been proposed to be responsible for their skin phenotypes. In the present study, we analyzed those mutations, revealing a change in the protein structure, a modification of the glycosylation state, and an overall reduction in the activation of ENaC of the two mutant proteins. In vivo analyses demonstrated that both fr and fr(CR) mutant animals present analogous reduction of embryonic viability, similar histologic aberrations at the level of the skin, and a significant decrease in the activity of ENaC in the distal colon compared with their control littermates. Hairless rats additionally had dehydration defects in skin and intestine and significant reduction in the body weight. In conclusion, we provided molecular and functional evidence that CAP1/Prss8 mutations are accountable for the defects in fr and fr(CR) animals, and we furthermore demonstrate a decreased function of the CAP1/Prss8 mutant proteins. Therefore, fr and fr(CR) animals are suitable models to investigate the consequences of CAP1/Prss8 action on its target proteins in the whole organism.

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For cell morphogenesis, the cell must establish distinct spatial domains at specified locations at the cell surface. Here, we review the molecular mechanisms of cell polarity in the fission yeast Schizosaccharomyces pombe. These are simple rod-shaped cells that form cortical domains at cell tips for cell growth and at the cell middle for cytokinesis. In both cases, microtubule-based systems help to shape the cell by breaking symmetry, providing endogenous spatial cues to position these sites. The plus ends of dynamic microtubules deliver polarity factors to the cell tips, leading to local activation of the GTPase cdc42p and the actin assembly machinery. Microtubule bundles contribute to positioning the division plane through the nucleus and the cytokinesis factor mid1p. Recent advances illustrate how the spatial and temporal regulation of cell polarization integrates many elements, including historical landmarks, positive and negative controls, and competition between pathways.

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I. Facteurs associés avec l'infection tuberculose latent chez les requérants d'asile entrant dans le canton de Vaud : Une étude transversale dans le canton de Vaud. Objectifs : Les objectifs de cette étude étaient l'identification des facteurs associés à l'infection tuberculeuse latente (ITBL) chez les requérants d'asile récemment arrivés au Canton de Vaud et leur utilisation pondérée pour l'élaboration d'un score prédictif qui pourrait permettre la meilleure sélection des individus à dépister avec les Interferon Gamma Release Assays (IGRA). Méthode : Le protocole de l'étude prévoyait l'inclusion des requérants d'asile de plus de 16 ans, récemment arrivés dans deux centre de requérant du canton de Vaud ceux de Sainte-Croix et de Crissier. De septembre 2009 à juillet 2010 les requérants d'asile ont bénéficié lors des visites au centre de soins infirmier (CSI) d'informations sur l'ITBL et le protocole et les enjeux de l'étude. Les requérants d'asile ont d'emblée été informées que leur participation à l'étude n'aurait pas d'impact sur le débouché de leur dossier d'asile et qu'il n'y aurait pas de compensation financière à leur participation. Après avoir signé le consentement éclairé les requérants d'asile bénéficiaient d'une entrevue avec l'infirmière du centre où un questionnaire démographique et médical était remplit. 10cc de sang étaient prélevés à la fin de l'entrevue pour l'examen IGRA. Les patients présentant des symptômes évocateurs de tuberculose active ou un anamnèse de traitement pour une tuberculose active étaient exclus de l'étude et adressés au médecin référant du centre pour une visite médicale. Selon les résultats du test T-SPOT.TB (IGRA), les requérants étaient classés en deux groupes : positifs et négatifs. Le groupe IGRA positif était adressé au médecin référant. L'analyse statistique des données de l'étude a été réalisée par le logiciel STATA 11.2. Les coefficients de l'analyse multivariée ont été combinées pour la création d'un score pronostic dont la puissance de discrimination a été évaluée par une courbe ROC. Le protocole de l'étude avait reçu l'aval de la commission d'éthique de l'Université de Lausanne. Résultats : Durant la période de l'étude, 788 requérants d'asile ont été hébergés dans les deux centres de l'étude. 639 avaient plus de 16 ans et 393 d'entre eux ont participé à l'étude (61.50%). 295 (75.06%) avaient un IGRA négatif et 98 (24.93%) étaient positifs. A noter que parmi les 98 positifs, 5 avaient une tuberculose active non détecté précédemment. Les analyses univarié et multivarié ont permis d'identifier 6 facteurs associées à l'ITBL : Région d'origine, moyen de transport, état civil, âge, toux et antécédent d'exposition à la tuberculose. Le score élaboré en combinant ces 6 facteurs présente un AUC de 81% avec une sensibilité de 80%, une spécificité de 70% et des valeurs prédictive positive et négative respectivement de 45% et 92% quant un seuil de 13 est utilisé. Conclusion : Les requérants d'asile qui immigrent en Suisse proviennent de pays où l'incidence de la tuberculose est supérieure à celle des pays de l'Europe occidentale et présentent un risque élevé pour l'infection tuberculose latente (ITBL). L'origine comme seul facteur n'est pas suffisant pour stratifier le risque d'ITBL et ne peut pas justifier la prescription d'un traitement préventif d'ITBL. L'introduction des tests de détection, hautement spécifiques de l'infection au M. tuberculosis tel que les IGRA ainsi que le taux élevé de réussite des traitements préventifs de l'infection latente ont ouvert la voie à un dépistage précoce de l'ITBL qui compléterait le dépistage de la tuberculose active actuellement effectué à la frontière. Afin de mieux cibler le dépistage par ces tests une meilleure sélection des individus à dépister est impérative. Elle pourrait se faire en évaluant le score individuel de risque ITBL par requérant. -- II. Taux élevé d'adhérence au traitement préventif de l'infection tuberculeuse latente prescrit à un collectif de requérants d'asile dans un canton suisse. Objectifs: L'efficacité du traitement préventif de l'infection tuberculeuse latente dépend de l'adherence du sujet au traitement. Un traitement bien conduit pour une duré prévue est en mesure de prévenir l'activation des cas d'infection tuberculeuse latente (ITBL). Le plus grand enjeu dans un programme préventif pour la tuberculose est, outre de cibler la détection des individus les plus à risque pour l'ITBL, de pouvoir traiter efficacement le collectif dépisté positif. Cette étude évaluait la faisabilité d'un traitement préventif court parmi un collectif de requérants d'asile porteurs d'une ITBL dans le canton de Vaud. Méthode: Nous avons effectué une étude prospective de cohorte parmi des requérants d'asile récemment attribués dans le canton de Vaud, âgés de plus de 16 ans et qui avaient été dépistés positifs par IGRA. L'ensemble du collectif selon le protocole de l'étude était adressé au médecin référant afin d'exclure une tuberculose active et pour discuter du traitement préventif si le diagnostic d'ITBL était confirmé. Lors de la première visite médicale, outre l'examen clinique, un bilan radiologique avec une radiographie du thorax et un bilan de la biologie hépatique ainsi qu'un test de dépistage HIV était proposé à l'ensemble du collectif. En cas de suspicion clinique ou d'image radiologique suspecte de tuberculose active le sujet était adressé pour des examens complémentaires. Les sujets porteurs d'ITBL se voyaient proposés, en l'absence de contre indications, un traitement de rifampicine de quatre mois. En acceptant de participer à l'étude ils s'engageaient de se présenter à leur contrôle médical mensuel où était évaluée l'adhérence au traitement et l'apparition d'effets indésirable ou de complications. Si l'adhérence était jugée correcte l'ordonnance du traitement était renouvelée d'un mois et le requérant recevait son prochain rendez-vous de contrôle. L'adhérence était considéré satisfaisante si le patient était adhérent à son schéma de visites médicales et demandait le renouvellement de son ordonnance. Si le requérant d'asile ne se présentait pas à deux contrôles il était considéré comme non adhérent et son traitement est suspendu. Résultats : Notre collectif comptait 98 sujet présument atteint de ITBL sur la base du test T-SPOT.TB ce qui représentait 24.9% du collectif initial. L'âge moyen était de 26.7 ans, 74% était des hommes. La majorité étaient des africains: 66 %, 17% étaient asiatiques et les populations balkaniques et de l'exunion soviétique étaient représentés à part égale d'huit pourcent. Parmi notre collectif nous n'avions pas de sujet immunodéficient notamment HIV positif. Des 98 sujets, 11 ne se sont pas présenté à leur visite médicale initiale. La visite médicale initiale a permis la détection de 8 patients porteurs d'une tuberculose active, dont cinq ont reçu un traitement antituberculeux, ou d'une autre affection pulmonaire non tuberculeuse. Chez deux patients il y avait une contre-indication au traitement préventif et deux avaient un anamnèse positif de traitement antituberculeux non précédemment déclaré. Le traitement préventif a été prescrit à 74 requérants d'asile. Durant le suivi mensuel trois requérants ne se sont pas présentés lors de la première visite de suivi, trois lors de la seconde et sept lors de la troisième pour un total de 13 sujets. Chez deux sujets le traitement préventif a du être suspendu à cause d'une adhérence problématique secondaire à des abus de substances illégales. Durant le suivi, nous n'avons pas eu de sérieuses complications ni d'effets indésirables au traitement qui auraient nécessité son arrêt. En final 60/75 des sujets ont achevé leur traitement soit 80% du collectif. Conclusion: Malgré la vulnérabilité et la volatilité inhérente à cette population qui est d'ailleurs la plus à risqué de réactivation d'une ITBL, cette étude montre que il est possible d'obtenir de taux d'adhérence très élevés au traitement préventif. Nous considérons que les conditions qui ont permis ces résultats sont la prescription d'un schéma de traitement préventif court, un suivi médico-soignant régulier et l'hébergement contrôlée et stable où résidait notre collectif.

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Background Alzheimer's disease (AD) is the leading form of dementia worldwide. The Aß-peptide is believed to be the major pathogenic compound of the disease. Since several years it is hypothesized that Aß impacts the Wnt signaling cascade and therefore activation of this signaling pathway is proposed to rescue the neurotoxic effect of Aß. Findings Expression of the human Aß42 in the Drosophila nervous system leads to a drastically shortened life span. We found that the action of Aß42 specifically in the glutamatergic motoneurons is responsible for the reduced survival. However, we find that the morphology of the glutamatergic larval neuromuscular junctions, which are widely used as the model for mammalian central nervous system synapses, is not affected by Aß42 expression. We furthermore demonstrate that genetic activation of the Wnt signal transduction pathway in the nervous system is not able to rescue the shortened life span or a rough eye phenotype in Drosophila. Conclusions Our data confirm that the life span is a useful readout of Aß42 induced neurotoxicity in Drosophila; the neuromuscular junction seems however not to be an appropriate model to study AD in flies. Additionally, our results challenge the hypothesis that Wnt signaling might be implicated in Aß42 toxicity and might serve as a drug target against AD.

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Cellular inhibitor of apoptosis (cIAP) proteins, cIAP1 and cIAP2, are important regulators of tumor necrosis factor (TNF) superfamily (SF) signaling and are amplified in a number of tumor types. They are targeted by IAP antagonist compounds that are undergoing clinical trials. IAP antagonist compounds trigger cIAP autoubiquitylation and degradation. The TNFSF member TWEAK induces lysosomal degradation of TRAF2 and cIAPs, leading to elevated NIK levels and activation of non-canonical NF-kappaB. To investigate the role of the ubiquitin ligase RING domain of cIAP1 in these pathways, we used cIAP-deleted cells reconstituted with cIAP1 point mutants designed to interfere with the ability of the RING to dimerize or to interact with E2 enzymes. We show that RING dimerization and E2 binding are required for IAP antagonists to induce cIAP1 degradation and protect cells from TNF-induced cell death. The RING functions of cIAP1 are required for full TNF-induced activation of NF-kappaB, however, delayed activation of NF-kappaB still occurs in cIAP1 and -2 double knock-out cells. The RING functions of cIAP1 are also required to prevent constitutive activation of non-canonical NF-kappaB by targeting NIK for proteasomal degradation. However, in cIAP double knock-out cells TWEAK was still able to increase NIK levels demonstrating that NIK can be regulated by cIAP-independent pathways. Finally we show that, unlike IAP antagonists, TWEAK was able to induce degradation of cIAP1 RING mutants. These results emphasize the critical importance of the RING of cIAP1 in many signaling scenarios, but also demonstrate that in some pathways RING functions are not required.