GSTDTAP

浏览/检索结果: 共6条,第1-6条 帮助

限定条件    
已选(0)清除 条数/页:   排序方式:
Molecular architecture of the human 17S U2 snRNP 期刊论文
NATURE, 2020, 583 (7815) : 310-+
作者:  Muench, David E.;  Olsson, Andre;  Ferchen, Kyle;  Pham, Giang;  Serafin, Rachel A.;  Chutipongtanate, Somchai;  Dwivedi, Pankaj;  Song, Baobao;  Hay, Stuart;  Chetal, Kashish;  Trump-Durbin, Lisa R.;  Mookerjee-Basu, Jayati;  Zhang, Kejian;  Yu, Jennifer C.
收藏  |  浏览/下载:18/0  |  提交时间:2020/07/03

The U2 small nuclear ribonucleoprotein (snRNP) has an essential role in the selection of the precursor mRNA branch-site adenosine, the nucleophile for the first step of splicing'  . Stable addition of U2 during early spliceosome formation requiresthe DEAD-box ATPase PRP5(2-7). Yeast U2 small nuclear RNA (snRNA) nucleotides that form base pairs with the branch site are initially sequestered in a branchpoint-interacting stem-loop (BSL)(8), but whether the human U2 snRNA folds in a similar manner is unknown. The U2 SF3B1 protein, a common mutational target in haematopoietic cancers(9), contains a HEAT domain (SF3B1(HEAT)) with an open conformation in isolated SF3b(10), but a closed conformation in spliceosomes(11), which is required for stable interaction between U2 and the branch site. Here we report a 3D cryo-electron microscopy structure ofthe human 17S U2 snRNP at a core resolution of 4.1 angstrom and combine it with protein crosslinking data to determine the molecular architecture of this snRNP. Our structure reveals that SF3B1(HEAT) interacts with PRP5 and TAT-SF1, and maintains its open conformation in U2 snRNP, and that U2 snRNA forms a BSL that is sandwiched between PRP5, TAT-SF1 and SF3B1(HEAT). Thus, substantial remodelling of the BSL and displacement of BSL-interacting proteins must occur to allow formation of the U2-branch-site helix. Our studies provide a structural explanation of why TAT-SF1 must be displaced before the stable addition of U2 to the spliceosome, and identify RNP rearrangements facilitated by PRP5 that are required for stable interaction between U2 and the branch site.


  
Autophagy promotes immune evasion of pancreatic cancer by degrading MHC-I 期刊论文
NATURE, 2020, 581 (7806) : 100-+
作者:  Waszak, Sebastian M.;  Robinson, Giles W.;  Gudenas, Brian L.;  Smith, Kyle S.;  Forget, Antoine;  Kojic, Marija;  Garcia-Lopez, Jesus;  Hadley, Jennifer;  Hamilton, Kayla V.;  Indersie, Emilie;  Buchhalter, Ivo;  Kerssemakers, Jules;  Jager, Natalie;  Sharma, Tanvi;  Rausch, Tobias;  Kool, Marcel;  Sturm, Dominik;  Jones, David T. W.;  Vasilyeva, Aksana;  Tatevossian, Ruth G.;  Neale, Geoffrey;  Lombard, Berangere;  Loew, Damarys;  Nakitandwe, Joy;  Rusch, Michael;  Bowers, Daniel C.;  Bendel, Anne;  Partap, Sonia;  Chintagumpala, Murali;  Crawford, John;  Gottardo, Nicholas G.;  Smith, Amy;  Dufour, Christelle;  Rutkowski, Stefan;  Eggen, Tone;  Wesenberg, Finn;  Kjaerheim, Kristina;  Feychting, Maria;  Lannering, Birgitta;  Schuz, Joachim;  Johansen, Christoffer;  Andersen, Tina V.;  Roosli, Martin;  Kuehni, Claudia E.;  Grotzer, Michael;  Remke, Marc;  Puget, Stephanie;  Pajtler, Kristian W.;  Milde, Till;  Witt, Olaf;  Ryzhova, Marina;  Korshunov, Andrey;  Orr, Brent A.;  Ellison, David W.;  Brugieres, Laurence;  Lichter, Peter;  Nichols, Kim E.;  Gajjar, Amar;  Wainwright, Brandon J.;  Ayrault, Olivier;  Korbel, Jan O.;  Northcott, Paul A.;  Pfister, Stefan M.
收藏  |  浏览/下载:37/0  |  提交时间:2020/07/03

Immune evasion is a major obstacle for cancer treatment. Common mechanisms of evasion include impaired antigen presentation caused by mutations or loss of heterozygosity of the major histocompatibility complex class I (MHC-I), which has been implicated in resistance to immune checkpoint blockade (ICB) therapy(1-3). However, in pancreatic ductal adenocarcinoma (PDAC), which is resistant to most therapies including ICB4, mutations that cause loss of MHC-I are rarely found(5) despite the frequent downregulation of MHC-I expression(6-8). Here we show that, in PDAC, MHC-I molecules are selectively targeted for lysosomal degradation by an autophagy-dependent mechanism that involves the autophagy cargo receptor NBR1. PDAC cells display reduced expression of MHC-I at the cell surface and instead demonstrate predominant localization within autophagosomes and lysosomes. Notably, inhibition of autophagy restores surface levels of MHC-I and leads to improved antigen presentation, enhanced anti-tumour T cell responses and reduced tumour growth in syngeneic host mice. Accordingly, the anti-tumour effects of autophagy inhibition are reversed by depleting CD8(+) T cells or reducing surface expression of MHC-I. Inhibition of autophagy, either genetically or pharmacologically with chloroquine, synergizes with dual ICB therapy (anti-PD1 and anti-CTLA4 antibodies), and leads to an enhanced anti-tumour immune response. Our findings demonstrate a role for enhanced autophagy or lysosome function in immune evasion by selective targeting of MHC-I molecules for degradation, and provide a rationale for the combination of autophagy inhibition and dual ICB therapy as a therapeutic strategy against PDAC.


Inhibition of the autophagy-lysosome system upregulates surface expression of MHC class I proteins and enhances antigen presentation, and evokes a potent anti-tumour immune response that is mediated by CD8(+) T cells.


  
Large loss of CO2 in winter observed across the northern permafrost region (vol 9, pg 852, 2019) 期刊论文
NATURE CLIMATE CHANGE, 2019, 9 (12) : 1005-1005
作者:  Natali, Susan M.;  Watts, Jennifer D.;  Rogers, Brendan M.;  Potter, Stefano;  Ludwig, Sarah M.;  Selbmann, Anne-Katrin;  Sullivan, Patrick F.;  Abbott, Benjamin W.;  Arndt, Kyle A.;  Birch, Leah;  Bjorkman, Mats P.;  Bloom, A. Anthony;  Celis, Gerardo;  Christensen, Torben R.;  Christiansen, Casper T.;  Commane, Roisin;  Cooper, Elisabeth J.;  Crill, Patrick;  Czimczik, Claudia;  Davydov, Sergey;  Du, Jinyang;  Egan, Jocelyn E.;  Elberling, Bo;  Euskirchen, Eugenie S.;  Friborg, Thomas;  Genet, Helene
收藏  |  浏览/下载:8/0  |  提交时间:2020/02/16
Large loss of CO2 in winter observed across the northern permafrost region 期刊论文
NATURE CLIMATE CHANGE, 2019, 9 (11) : 852-+
作者:  Natali, Susan M.;  Watts, Jennifer D.;  Rogers, Brendan M.;  Potter, Stefano;  Ludwig, Sarah M.;  Selbmann, Anne-Katrin;  Sullivan, Patrick F.;  Abbott, Benjamin W.;  Arndt, Kyle A.;  Birch, Leah;  Bjorkman, Mats P.;  Bloom, A. Anthony;  Celis, Gerardo;  Christensen, Torben R.;  Christiansen, Casper T.;  Commane, Roisin;  Cooper, Elisabeth J.;  Crill, Patrick;  Czimczik, Claudia;  Davydov, Sergey;  Du, Jinyang;  Egan, Jocelyn E.;  Elberling, Bo;  Euskirchen, Eugenie S.;  Friborg, Thomas;  Genet, Helene;  Goeckede, Mathias;  Goodrich, Jordan P.;  Grogan, Paul;  Helbig, Manuel;  Jafarov, Elchin E.;  Jastrow, Julie D.;  Kalhori, Aram A. M.;  Kim, Yongwon;  Kimball, John S.;  Kutzbach, Lars;  Lara, Mark J.;  Larsen, Klaus S.;  Lee, Bang-Yong;  Liu, Zhihua;  Loranty, Michael M.;  Lund, Magnus;  Lupascu, Massimo;  Madani, Nima;  Malhotra, Avni;  Matamala, Roser;  McFarland, Jack;  McGuire, A. David;  Michelsen, Anders;  Minions, Christina;  Oechel, Walter C.;  Olefeldt, David;  Parmentier, Frans-Jan W.;  Pirk, Norbert;  Poulter, Ben;  Quinton, William;  Rezanezhad, Fereidoun;  Risk, David;  Sachs, Torsten;  Schaefer, Kevin;  Schmidt, Niels M.;  Schuur, Edward A. G.;  Semenchuk, Philipp R.;  Shaver, Gaius;  Sonnentag, Oliver;  Starr, Gregory;  Treat, Claire C.;  Waldrop, Mark P.;  Wang, Yihui;  Welker, Jeffrey;  Wille, Christian;  Xu, Xiaofeng;  Zhang, Zhen;  Zhuang, Qianlai;  Zona, Donatella
收藏  |  浏览/下载:17/0  |  提交时间:2019/11/27
Controlling CRISPR-Cas9 with ligand-activated and ligand-deactivated sgRNAs 期刊论文
NATURE COMMUNICATIONS, 2019, 10
作者:  Kundert, Kale;  Lucas, James E.;  Watters, Kyle E.;  Fellmann, Christof;  Ng, Andrew H.;  Heineike, Benjamin M.;  Fitzsimmons, Christina M.;  Oakes, Benjamin L.;  Qu, Jiuxin;  Prasad, Neha;  Rosenberg, Oren S.;  Savage, David F.;  El-Samad, Hana;  Doudna, Jennifer A.;  Kortemme, Tanja
收藏  |  浏览/下载:5/0  |  提交时间:2019/11/27
Systematic discovery of natural CRISPR-Cas12a inhibitors 期刊论文
SCIENCE, 2018, 362 (6411) : 236-239
作者:  Watters, Kyle E.;  Fellmann, Christof;  Bai, Hua B.;  Ren, Shawn M.;  Doudna, Jennifer A.
收藏  |  浏览/下载:6/0  |  提交时间:2019/11/27