1000 resultados para germinative cells
Resumo:
Phosphoglucose isomerase (PGI) catalyzes the reversible isomerization of glucose-6-phosphate and fructose-6-phosphate. It is involved in glycolysis and in the regeneration of glucose-6-P molecules in the oxidative pentose phosphate pathway (OPPP). In chloroplasts of illuminated mesophyll cells PGI also connects the Calvin-Benson cycle with the starch biosynthetic pathway. In this work we isolated pgi1-3, a mutant totally lacking pPGI activity as a consequence of aberrant intron splicing of the pPGI encoding gene, PGI1. Starch content in pgi1-3 source leaves was ca. 10-15% of that of wild type (WT) leaves, which was similar to that of leaves of pgi1-2, a T-DNA insertion pPGI null mutant. Starch deficiency of pgi1 leaves could be reverted by the introduction of a sex1 null mutation impeding beta-amylolytic starch breakdown. Although previous studies showed that starch granules of pgi1-2 leaves are restricted to both bundle sheath cells adjacent to the mesophyll and stomata guard cells, microscopy analyses carried out in this work revealed the presence of starch granules in the chloroplasts of pgi1-2 and pgi1-3 mesophyll cells. RT-PCR analyses showed high expression levels of plastidic and extra-plastidic beta-amylase encoding genes in pgi1 leaves, which was accompanied by increased beta-amylase activity. Both pgi1-2 and pgi1-3 mutants displayed slow growth and reduced photosynthetic capacity phenotypes even under continuous light conditions. Metabolic analyses revealed that the adenylate energy charge and the NAD(P) H/NAD(P) ratios in pgi1 leaves were lower than those of WT leaves. These analyses also revealed that the content of plastidic 2-C-methyl-D-erythritol 4-phosphate (MEP)-pathway derived cytokinins (CKs) in pgi1 leaves were exceedingly lower than in WT leaves. Noteworthy, exogenous application of CKs largely reverted the low starch content phenotype of pgi1 leaves. The overall data show that pPGI is an important determinant of photosynthesis, energy status, growth and starch accumulation in mesophyll cells likely as a consequence of its involvement in the production of OPPP/glycolysis intermediates necessary for the synthesis of plastidic MEP-pathway derived hormones such as CKs.
Resumo:
Dendritic cells (DCs) are essential in order to combat invading viruses and trigger antiviral responses. Paradoxically, in the case of HIV-1, DCs might contribute to viral pathogenesis through trans-infection, a mechanism that promotes viral capture and transmission to target cells, especially after DC maturation. In this review, we highlight recent evidence identifying sialyllactose-containing gangliosides in the viral membrane and the cellular lectin Siglec-1 as critical determinants for HIV-1 capture and storage by mature DCs and for DC-mediated trans-infection of T cells. In contrast, DC-SIGN, long considered to be the main receptor for DC capture of HIV-1, plays a minor role in mature DC-mediated HIV-1 capture and trans-infection.
Resumo:
It has long been known that neurons in the brain are not physiologically homogeneous. In response to current stimulus, they can fire several distinct patterns of action potentials that are associated with different physiological classes ranging from regular-spiking cells, fast-spiking cells, intrinsically bursting cells, and low-threshold cells. In this work we show that the high degree of variability in firing characteristics of action potentials among these cells is accompanied with a significant variability in the energy demands required to restore the concentration gradients after an action potential. The values of the metabolic energy were calculated for a wide range of cell temperatures and stimulus intensities following two different approaches. The first one is based on the amount of Na+ load crossing the membrane during a single action potential, while the second one focuses on the electrochemical energy functions deduced from the dynamics of the computational neuron models. The results show that the thalamocortical relay neuron is the most energy-efficient cell consuming between 7 and 18 nJ/cm(2) for each spike generated, while both the regular and fast spiking cells from somatosensory cortex and the intrinsically-bursting cell from a cat visual cortex are the least energy-efficient, and can consume up to 100 nJ/cm(2) per spike. The lowest values of these energy demands were achieved at higher temperatures and high external stimuli.
Resumo:
While TRAIL is a promising anticancer agent due to its ability to selectively induce apoptosis in neoplastic cells, many tumors, including pancreatic ductal adenocarcinoma (PDA), display intrinsic resistance, highlighting the need for TRAIL-sensitizing agents. Here we report that TRAIL-induced apoptosis in PDA cell lines is enhanced by pharmacological inhibition of glycogen synthase kinase-3 (GSK-3) or by shRNA-mediated depletion of either GSK-3 alpha or GSK-3 beta. In contrast, depletion of GSK-3 beta, but not GSK-3 alpha, sensitized PDA cell lines to TNF alpha-induced cell death. Further experiments demonstrated that TNF alpha-stimulated I kappa B alpha phosphorylation and degradation as well as p65 nuclear translocation were normal in GSK-3 beta-deficient MEFs. Nonetheless, inhibition of GSK-3 beta function in MEFs or PDA cell lines impaired the expression of the NF-kappa B target genes Bcl-xL and cIAP2, but not I kappa B alpha. Significantly, the expression of Bcl-xL and cIAP2 could be reestablished by expression of GSK-3 beta targeted to the nucleus but not GSK-3 beta targeted to the cytoplasm, suggesting that GSK-3 beta regulates NF-kappa B function within the nucleus. Consistent with this notion, chromatin immunoprecipitation demonstrated that GSK-3 inhibition resulted in either decreased p65 binding to the promoter of BIR3, which encodes cIAP2, or increased p50 binding as well as recruitment of SIRT1 and HDAC3 to the promoter of BCL2L1, which encodes Bcl-xL. Importantly, depletion of Bcl-xL but not cIAP2, mimicked the sensitizing effect of GSK-3 inhibition on TRAIL-induced apoptosis, whereas Bcl-xL overexpression ameliorated the sensitization by GSK-3 inhibition. These results not only suggest that GSK-3 beta overexpression and nuclear localization contribute to TNF alpha and TRAIL resistance via anti-apoptotic NF-kappa B genes such as Bcl-xL, but also provide a rationale for further exploration of GSK-3 inhibitors combined with TRAIL for the treatment of PDA.
Resumo:
A hidatidose policística é uma zoonose causada pelo cestóide Echinococcus vogeli, amplamente distribuído no norte do Brasil. Os hospedeiros definitivos são Speothos venaticus (cachorro-vinagre) e Canis familiaris (cães domésticos), enquanto Agouti paca (paca) é hospedeiro intermediário. Tanto as pacas quanto o homem (hospedeiro acidental) desenvolvem a forma larvar (metacestóide), principalmente na superfície e no interior do fígado. Esta tese tem como objetivo geral estudar as características parasitológicas e histopatológicas de metacestóides de E. vogeli, originários de pacas e humanos da região norte do Brasil, visto o conhecimento insuficiente ou mesmo o seu desconhecimento. Os fígados e mesentérios foram obtidos de oito pacientes com hidatidose policística durante ato cirúrgico na Fundação Hospital Estadual do Acre. Pacas foram capturadas no Município de Bujari, Floresta Estadual do Antimary, Acre. Durante a necropsia das pacas, foram observadas lesões macroscópicas (massas esbranquiçadas ou amareladas, semelhantes a bolhas na superfície dos fígados). Para a análise parasitológica foram aplicadas as microscopias de luz, contraste interferencial de Normaski (DIC) e varredura laser confocal. A análise morfométrica foi realizada com o auxílio do Programa Image Pro Plus Media Cybernetics. Os órgãos de pacas e humanos foram submetidos à análise histopatológica. Os pequenos e grandes ganchos rostelares apresentaram polimorfismo morfológico, enquanto a organização dos protoescólices acompanhou o padrão descrito para Echinococcus sp. Todas as pacas apresentavam cistos hepáticos, porém em apenas duas encontramos líquido hidático, comprovados pela presença dos ganchos e protoescólices. A análise histopatológica dos tecidos hepáticos das pacas confirmou a hidatidose policística e evidenciou, pela presença de agrupamentos de ovos, a coinfecção com Calodium hepaticum. As características morfológicas dos ganchos rostelares dos casos humanos não diferiram do descrito para as pacas, entretanto, os ganchos dos helmintos provenientes do fígado foram maiores que os mesentéricos. Já em relação aos protoescólices, os mesentéricos foram maiores do que os hepáticos. Cistos mesentéricos e hepáticos apresentaram protoescólices em diferentes estágios de desenvolvimento, com coroas de ganchos, formadas por grandes e pequenos ganchos, e dois pares de ventosas, além dos corpúsculos calcários. Os cistos hepáticos apresentaram as três membranas características (adventícia, anista e germinativa), enquanto os cistos mesentéricos não apresentaram a membrana adventícia, sendo a anista aquela que mais se destacou neste órgão. No mesentério, as células mononucleares foram os principais constituintes do infiltrado leucocitário, cuja intensidade foi relacionada à capacidade proliferativa da membrana germinativa. Além de cistos hepáticos típicos de fase crônica, dependendo da resposta inflamatória, foram observados cistos na fase aguda e sub-aguda. Foi encontrado um caso de coinfecção com vírus (HIV, HCB e HCV) e outro com envolvimento da vesícula biliar. Em suma, confirma-se hidatidose policística em pacas no Acre e são apresentados novos casos de infecção humana no Acre e Amazonas. Pela primeira vez, é demonstrado polimorfismo, padrão diferente de desenvolvimento dos cistos de acordo com o órgão, coinfecção e envolvimento da vesícula biliar