945 resultados para Taylor, Mark C
Resumo:
The 5′-untranslated region of hepatitis C virus (HCV) is highly conserved, folds into a complex secondary structure, and functions as an internal ribosome entry site (IRES) to initiate translation of HCV proteins. We have developed a selection system based on a randomized hairpin ribozyme gene library to identify cellular factors involved in HCV IRES function. A retroviral vector ribozyme library with randomized target recognition sequences was introduced into HeLa cells, stably expressing a bicistronic construct encoding the hygromycin B phosphotransferase gene and the herpes simplex virus thymidine kinase gene (HSV-tk). Translation of the HSV-tk gene was mediated by the HCV IRES. Cells expressing ribozymes that inhibit HCV IRES-mediated translation of HSV-tk were selected via their resistance to both ganciclovir and hygromycin B. Two ribozymes reproducibly conferred the ganciclovir-resistant phenotype and were shown to inhibit IRES-mediated translation of HCV core protein but did not inhibit cap-dependent protein translation or cell growth. The functional targets of these ribozymes were identified as the gamma subunits of human eukaryotic initiation factors 2B (eIF2Bγ) and 2 (eIF2γ), respectively. The involvement of eIF2Bγ and eIF2γ in HCV IRES-mediated translation was further validated by ribozymes directed against additional sites within the mRNAs of these genes. In addition to leading to the identification of cellular IRES cofactors, ribozymes obtained from this cellular selection system could be directly used to specifically inhibit HCV viral translation, thereby facilitating the development of new antiviral strategies for HCV infection.
Resumo:
Differential compartmentalization of signaling molecules in cells and tissues is being recognized as an important mechanism for regulating the specificity of signal transduction pathways. A kinase anchoring proteins (AKAPs) direct the subcellular localization of protein kinase A (PKA) by binding to its regulatory (R) subunits. Dual specific AKAPs (D-AKAPs) interact with both RI and RII. A 372-residue fragment of mouse D-AKAP2 with a 40-residue C-terminal PKA binding region and a putative regulator of G protein signaling (RGS) domain was previously identified by means of a yeast two-hybrid screen. Here, we report the cloning of full-length human D-AKAP2 (662 residues) with an additional putative RGS domain, and the corresponding mouse protein less the first two exons (617 residues). Expression of D-AKAP2 was characterized by using mouse tissue extracts. Full-length D-AKAP2 from various tissues shows different molecular weights, possibly because of alternative splicing or posttranslational modifications. The cloned human gene product has a molecular weight similar to one of the prominent mouse proteins. In vivo association of D-AKAP2 with PKA in mouse brain was demonstrated by using cAMP agarose pull-down assay. Subcellular localization for endogenous mouse, rat, and human D-AKAP2 was determined by immunocytochemistry, immunohistochemistry, and tissue fractionation. D-AKAP2 from all three species is highly enriched in mitochondria. The mitochondrial localization and the presence of RGS domains in D-AKAP2 may have important implications for its function in PKA and G protein signal transduction.
Resumo:
We have compared the tumorigenicity of two src oncogenes, v-src and c-src(527), whose respective protein products pp60v-src and pp60c-src(527) show a different spectrum of amino acid substitutions vis-à-vis the c-src protooncogene-encoded product pp60c-src. Whereas the extent of primary tumor growth induced by c-src(527) was quite similar in the two chicken lines tested, the extent of v-src-induced tumor growth showed a marked line dependence. As examined with a line of chickens that shows immune-mediated regression of v-src-induced tumors, a weaker tumor immunity, as correlated with a greater level of primary tumor growth, resulted from inoculation of c-src(527) DNA than of v-src DNA. These observations indicated that the v-src-specific amino acid substitutions define a major tumor antigenicity. That a separate src-associated antigenicity is also targetable by the tumor immune response followed from the finding that the level of protective immunity against the growth of c-src(527) DNA-induced tumors was augmented under conditions of the prior regression of v-src DNA-induced tumors. As this latter antigenicity may include one or more c-src(527)-encoded peptides that are equivalent to c-src-encoded self peptides, these observations suggest that a host tolerance to pp60c-src can be broken so as to permit a tumor immune response based on recognition of self peptides of pp60c-src(527).
Resumo:
Protein kinase C (PKC) isoenzymes are essential components of cell signaling. In this study, we investigated the regulation of PKC-alpha in murine B16 amelanotic melanoma (B16a) cells by the monohydroxy fatty acids 12(S)-hydroxyeicosatetraenoic acid [12(S)-HETE] and 13(S)-hydroxyoctadecadienoic acid [13(S)-HODE]. 12(S)-HETE induced a translocation of PKC-alpha to the plasma membrane and focal adhesion plaques, leading to enhanced adhesion of B16a cells to the matrix protein fibronectin. However, 13(S)-HODE inhibited these 12(S)-HETE effects on PKC-alpha. A receptor-mediated mechanism of action for 12(S)-HETE and 13(S)-HODE is supported by the following findings. First, 12(S)-HETE triggered a rapid increase in cellular levels of diacylglycerol and inositol trisphosphate in B16a cells. 13(S)-HODE blocked the 12(S)-HETE-induced bursts of both second messengers. Second, the 12(S)-HETE-increased adhesion of B16a cells to fibronectin was sensitive to inhibition by a phospholipase C inhibitor and pertussis toxin. Finally, a high-affinity binding site (Kd = 1 nM) for 12(S)-HETE was detected in B16a cells, and binding of 12(S)-HETE to B16a cells was effectively inhibited by 13(S)-HODE (IC50 = 4 nM). In summary, our data provide evidence that regulation of PKC-alpha by 12(S)-HETE and 13(S)-HODE may be through a guanine nucleotide-binding protein-linked receptor-mediated hydrolysis of inositol phospholipids.
Resumo:
The phenological stages of onion fields in the first year of growth are estimated using polarimetric observables and single-polarization intensity channels. Experiments are undertaken on a time series of RADARSAT-2 C-band full-polarimetric synthetic aperture radar (SAR) images collected in 2009 over the Barrax region, Spain, where ground truth information about onion growth stages is provided by the European Space Agency (ESA)-funded agricultural bio/geophysical retrieval from frequent repeat pass SAR and optical imaging (AgriSAR) field campaign conducted in that area. The experimental results demonstrate that polarimetric entropy or copolar coherence when used jointly with the cross-polarized intensity allows unambiguously distinguishing three phenological intervals.
Resumo:
Este trabalho investiga o processo de formação de identidades clubisticas durante a fase amadora do futebol brasileiro (1900 – 1933), tendo por foco os casos do C A Paulistano e do Fluminense F. C. Tal construção identitária costuma atribuir a estes clubes a marca da elitização calcada na distinção e no refinamento. Ao aprofundar e ao matizar essa versão consagrada pelo memorialismo esportivo, pretende-se analisar a história dessas duas agremiações, durante os anos iniciais do desenvolvimento do futebol na cidade do Rio de Janeiro e São Paulo, com destaque à relação do esporte com o desenvolvimento destas duas cidades. Para a demonstração de nosso argumento central, levantaremos os aspectos sociais, econômicos, políticos e culturais que podem ser considerados fundamentais na construção da imagem de distinção atribuída tanto ao Fluminense quanto ao Paulistano. Com o emprego do método comparativo, buscaremos apontar as semelhanças e diferenças na história desses clubes, tendo como pressupostos teóricos os trabalhos de Bourdieu sobre a distinção, de Hobsbawm e Ranger sobre a invenção das tradições e de Halbwachs sobre a memória coletiva. Junto aos acervos documentais das duas instituições examinadas, utilizaremos como fontes a documentação produzida pelos clubes no período e os periódicos da época. Procuraremos demonstrar, através dos relatos memoriais produzidos por escritores, dirigentes e ex-atletas, a perpetuação de uma série de valores simbólicos e de tradições que associaram o Paulistano e o Fluminense a um espaço de distinção e refinamento que se reproduziu ao longo das gerações e que permanece no imaginário esportivo até os dias atuais.
Resumo:
In May and June 1936 Dr. C. S. Piggot of the Geophysical Laboratory, Carnegie Institution of Washington, took a series of 11 deep-sea cores in the North Atlantic Ocean between the Newfoundland banks and the banks off the Irish coast. These cores were taken from the Western Union Telegraph Co.'s cable ship Lord Kelvin with the explosive type of sounding device which Dr. Piggot designed. All but two of these cores (Nos. 8 and 11) are more than 2.43 meters (8 feet) long, and all contain ample material for study. Of the two short cores, No. 8 was taken from the top of the Faraday Hills, as that part of the mid-Atlantic ridge is known, where the material is closely packed and more sandy and consequently more resistant; No. 11 came from a locality where the apparatus apparently landed on volcanic rock that may be part of a submarine lava flow.
Resumo:
Back Row: Paul Schmidt, Mike Gittleson, Rick Clark, Vance Bedford, Brady Hoke, Jim Herrmann, Mike DeBord, Fred Jackson, Bobby Morrison, Stan Parrish, Erik Campbell, Terry Malone, Scot Loeffler, Jon Falk, Phil Bromley, Mike Elston
8th Row: Tim Murphy, Dave Dean, Dr. Edward Wojtys, Dr. C. Daniel Hendrickson, Danielle Tiernan, Steve Connelly, Dwight Mosely, Scott Panique, Kirk Moundros, Tad Van Pelt, Mike Sajdak, Pete Clifford, Rob Abin, Rick Brandt, Mark Ouimet, Kelly Cox, Eric Dean, Buster Stanley, Jim Schneider
7th Row: Daydrion Taylor, Todd Howard, Walter Cross, Evan Coleman, Julius Curry, Justin Fargas, Hayden Epstein, Larry Foote, Shawn Lazarus, Victor Hobson, Dave Armstrong, Deitan Dubuc, Jonathan Goodwin, John Wood, Dennis Baker, Jason Ptak, Kyle Froelich, Paul Tannous
6th Row: Aaron Richards, Cyle Young, P.J. Cwayna, Jeremy Miller, Michael Manning, Jake Malacos, Brodie Killian, Gary Rose, Rudy Smith, Joe Denay, Bennie Joppru, Dan Rumishek, Dave Petruziello, Drew Henson, Dave Terrell, Marquise Walker, Cato June
5th Row: Patrick McCall, James Whitley, William Peterson, Anthony Thomas, Ray Jackson, Bill Seymour, Shawn Thompson, Kurt Anderson, Jason Brooks, Ben Mast, Adam Adkins, Todd Mossa, Bob Fraumann, Eric Brackins, Eric Rosel, DeWayne Patmon, Anthony Jordan
4th Row: Manus Edwards, Chris Roth, Dan Williams, LeAundre Brown, Eric Wilson, Chad Carpenter, Ian Gold, Marcus Knight, Eric Warner, Maurice Williams, Jake Frysinger, Grady Brooks, Cory Sargent, Ryan Parini, Andy Sechler, Jeff Del Verne
3rd Row: Brent Washington, Kevin Bryant, Jeff Smokevich, Mark Bergin, Kenneth Jackson, Jeff Holtry, David Brandt, Steve Hutchinson, Jeff Backus, Jason Kapsner, Tommy Hendricks, Dhani Jones, Jared Chandler, Tate Schanski, Brandon Kornblue, Matt Johnson
2nd Row: Jay Feely, Darren Petterson, Jason Vinson, Noah Parker, Aaron Shea, James Hall, Steve Frazier, Chris Ziemann, Jeff Potts, Tom Brady, Josh Williams, Patrick Kratus, DiAllo Johnson, Rob Renes, Kraig Baker
Front Row: Head Coach Lloyd Carr, Marcus Ray, Andre Weathers, Nate Miller, Sam Sword, Juaquin Feazell, Mark Campbell, Jon Jansen, Jerame Tuman, Clint Copenhaver, Tai Streets, Scott Dreisbach, Chris Singletary, Clarence Williams
Resumo:
National Highway Traffic Safety Administration, Office of Research and Development, Washington, D.C.