Resultados da busca - Murphy, Leon
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Relieving Autophagy and 4EBP1 from Rapamycin Resistance por Nyfeler, Beat, Bergman, Philip, Triantafellow, Ellen, Wilson, Christopher J., Zhu, Yanyi, Radetich, Branko, Finan, Peter M., Klionsky, Daniel J., Murphy, Leon O.
Publicado em 2011Texto -
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TBC1D7 is a third subunit of the TSC1-TSC2 complex upstream of mTORC1 por Dibble, Christian C., Elis, Winfried, Menon, Suchithra, Qin, Wei, Klekota, Justin, Asara, John M., Finan, Peter M., Kwiatkowski, David J., Murphy, Leon O., Manning, Brendan D.
Publicado em 2012Texto -
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Atg4b-Dependent Autophagic Flux Alleviates Huntington’s Disease Progression por Proenca, Catia C., Stoehr, Natacha, Bernhard, Mario, Seger, Shanon, Genoud, Christel, Roscic, Ana, Paganetti, Paolo, Liu, Shanming, Murphy, Leon O., Kuhn, Rainer, Bouwmeester, Tewis, Galimberti, Ivan
Publicado em 2013Texto -
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Autophagy-independent lysosomal targeting regulated by ULK1/2-FIP200 and ATG9 por Goodwin, Jonathan M., Dowdle, William E., DeJesus, Rowena, Wang, Zuncai, Bergman, Philip, Kobylarz, Marek, Lindeman, Alicia, Xavier, Ramnik, McAllister, Gregory, Nyfeler, Beat, Hoffman, Gregory, Murphy, Leon O.
Publicado em 2017Texto -
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RAD001 Enhances the Potency of BEZ235 to Inhibit mTOR Signaling and Tumor Growth por Nyfeler, Beat, Chen, Yan, Li, Xiaoyan, Pinzon-Ortiz, Maria, Wang, Zuncai, Reddy, Anupama, Pradhan, Elina, Das, Rita, Lehár, Joseph, Schlegel, Robert, Finan, Peter M., Cao, Z. Alexander, Murphy, Leon O., Huang, Alan
Publicado em 2012Texto -
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MK-STYX, a Catalytically Inactive Phosphatase Regulating Mitochondrially Dependent Apoptosis por Niemi, Natalie M., Lanning, Nathan J., Klomp, Jeff A., Tait, Stephen W., Xu, Yong, Dykema, Karl J., Murphy, Leon O., Gaither, L. Alex, Xu, H. Eric, Furge, Kyle A., Green, Douglas R., MacKeigan, Jeffrey P.
Publicado em 2011Texto -
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Defective Autophagy and mTORC1 Signaling in Myotubularin Null Mice por Fetalvero, Kristina M., Yu, Yenyen, Goetschkes, Margaret, Liang, Guiqing, Valdez, Reginald A., Gould, Ty, Triantafellow, Ellen, Bergling, Sebastian, Loureiro, Joseph, Eash, John, Lin, Victor, Porter, Jeffrey A., Finan, Peter M., Walsh, Kenneth, Yang, Yi, Mao, Xiaohong, Murphy, Leon O.
Publicado em 2013Texto -
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Activation of a metabolic gene regulatory network downstream of mTOR complex 1 por Düvel, Katrin, Yecies, Jessica L., Menon, Suchithra, Raman, Pichai, Lipovsky, Alex I., Souza, Amanda L., Triantafellow, Ellen, Ma, Qicheng, Gorski, Regina, Cleaver, Stephen, Heiden, Matthew G. Vander, MacKeigan, Jeffrey P., Finan, Peter M., Clish, Clary B., Murphy, Leon O., Manning, Brendan D.
Publicado em 2010Texto -
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Bidirectional Transport of Amino Acids Regulates mTOR and Autophagy por Nicklin, Paul, Bergman, Philip, Zhang, Bailin, Triantafellow, Ellen, Wang, Henry, Nyfeler, Beat, Yang, Haidi, Hild, Marc, Kung, Charles, Wilson, Christopher, Myer, Vic E., MacKeigan, Jeffrey P., Porter, Jeffrey A., Wang, Y. Karen, Cantley, Lewis C., Finan, Peter M., Murphy, Leon O.
Publicado em 2009Texto -
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TMEM41B is a novel regulator of autophagy and lipid mobilization por Moretti, Francesca, Bergman, Phil, Dodgson, Stacie, Marcellin, David, Claerr, Isabelle, Goodwin, Jonathan M, DeJesus, Rowena, Kang, Zhao, Antczak, Christophe, Begue, Damien, Bonenfant, Debora, Graff, Alexandra, Genoud, Christel, Reece‐Hoyes, John S, Russ, Carsten, Yang, Zinger, Hoffman, Gregory R, Mueller, Matthias, Murphy, Leon O, Xavier, Ramnik J, Nyfeler, Beat
Publicado em 2018Texto -
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Targeting quiescent leukemic stem cells using second generation autophagy inhibitors por Baquero, Pablo, Dawson, Amy, Mukhopadhyay, Arunima, Kuntz, Elodie M., Mitchell, Rebecca, Olivares, Orianne, Ianniciello, Angela, Scott, Mary T., Dunn, Karen, Nicastri, Michael C., Winkler, Jeffrey D., Michie, Alison M., Ryan, Kevin M., Halsey, Christina, Gottlieb, Eyal, Keaney, Erin P., Murphy, Leon O., Amaravadi, Ravi K., Holyoake, Tessa L., Helgason, G. Vignir
Publicado em 2018Texto -
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An iron-dependent metabolic vulnerability underlies VPS34-dependence in RKO cancer cells por Kobylarz, Marek J., Goodwin, Jonathan M., Kang, Zhao B., Annand, John W., Hevi, Sarah, O’Mahony, Ellen, McAllister, Gregory, Reece-Hoyes, John, Wang, Qiong, Alford, John, Russ, Carsten, Lindeman, Alicia, Beibel, Martin, Roma, Guglielmo, Carbone, Walter, Knehr, Judith, Loureiro, Joseph, Antczak, Christophe, Wiederschain, Dmitri, Murphy, Leon O., Menon, Suchithra, Nyfeler, Beat
Publicado em 2020Texto -
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Functional CRISPR screening identifies the ufmylation pathway as a regulator of SQSTM1/p62 por DeJesus, Rowena, Moretti, Francesca, McAllister, Gregory, Wang, Zuncai, Bergman, Phil, Liu, Shanming, Frias, Elizabeth, Alford, John, Reece-Hoyes, John S, Lindeman, Alicia, Kelliher, Jennifer, Russ, Carsten, Knehr, Judith, Carbone, Walter, Beibel, Martin, Roma, Guglielmo, Ng, Aylwin, Tallarico, John A, Porter, Jeffery A, Xavier, Ramnik J, Mickanin, Craig, Murphy, Leon O, Hoffman, Gregory R, Nyfeler, Beat
Publicado em 2016Texto -
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Indoleacrylic acid produced by commensal Peptostreptococcus species suppresses inflammation por Wlodarska, Marta, Luo, Chengwei, Kolde, Raivo, d’Hennezel, Eva, Annand, John W., Heim, Cortney E., Krastel, Philipp, Schmitt, Esther K., Omar, Abdifatah S., Creasey, Elizabeth A., Garner, Ashley L., Mohammadi, Sina, O’Connell, Daniel J., Abubucker, Sahar, Arthur, Timothy D., Franzosa, Eric A., Huttenhower, Curtis, Murphy, Leon O., Haiser, Henry J., Vlamakis, Hera, Porter, Jeffrey A., Xavier, Ramnik J.
Publicado em 2017Texto -
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PIKfyve, a class III PI-kinase, is the target of the small molecular IL12/23 inhibitor apilimod and a new player in toll-like receptor signaling por Cai, Xinming, Xu, Yongyao, Cheung, Atwood K., Tomlinson, Ronald C., Alcázar-Román, Abel, Murphy, Leon, Billich, Andreas, Zhang, Bailin, Feng, Yan, Klumpp, Martin, Rondeau, Jean-Michel, Fazal, Aleem N., Wilson, Christopher J., Myer, Vic, Joberty, Gerard, Bouwmeester, Tewis, Labow, Mark A., Finan, Peter M., Porter, Jeffrey A., Ploegh, Hidde L., Baird, Daniel, De Camilli, Pietro, Tallarico, John A., Huang, Qian
Publicado em 2013Texto -
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Vps34 PI 3-kinase inactivation enhances insulin sensitivity through reprogramming of mitochondrial metabolism por Bilanges, Benoit, Alliouachene, Samira, Pearce, Wayne, Morelli, Daniele, Szabadkai, Gyorgy, Chung, Yuen-Li, Chicanne, Gaëtan, Valet, Colin, Hill, Julia M., Voshol, Peter J., Collinson, Lucy, Peddie, Christopher, Ali, Khaled, Ghazaly, Essam, Rajeeve, Vinothini, Trichas, Georgios, Srinivas, Shankar, Chaussade, Claire, Salamon, Rachel S., Backer, Jonathan M., Scudamore, Cheryl L., Whitehead, Maria A., Keaney, Erin P., Murphy, Leon O., Semple, Robert K., Payrastre, Bernard, Tooze, Sharon A., Vanhaesebroeck, Bart
Publicado em 2017Texto