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COVID-19 testing: One size does not fit all 期刊论文
Science, 2021
作者:  Michael J. Mina;  Kristian G. Andersen
收藏  |  浏览/下载:34/0  |  提交时间:2021/01/15
Epidemiological hypothesis testing using a phylogeographic and phylodynamic framework 期刊论文
Nature Communications, 2020
作者:  Simon Dellicour;  Sebastian Lequime;  Bram Vrancken;  Mandev S. Gill;  Paul Bastide;  Karthik Gangavarapu;  Nathaniel L. Matteson;  Yi Tan;  Louis du Plessis;  Alexander A. Fisher;  Martha I. Nelson;  Marius Gilbert;  Marc A. Suchard;  Kristian G. Andersen;  Nathan D. Grubaugh;  Oliver G. Pybus;  Philippe Lemey
收藏  |  浏览/下载:10/0  |  提交时间:2020/11/09
Genomic surveillance reveals multiple introductions of SARS-CoV-2 into Northern California 期刊论文
Science, 2020
作者:  Xianding Deng;  Wei Gu;  Scot Federman;  Louis du Plessis;  Oliver G. Pybus;  Nuno R. Faria;  Candace Wang;  Guixia Yu;  Brian Bushnell;  Chao-Yang Pan;  Hugo Guevara;  Alicia Sotomayor-Gonzalez;  Kelsey Zorn;  Allan Gopez;  Venice Servellita;  Elaine Hsu;  Steve Miller;  Trevor Bedford;  Alexander L. Greninger;  Pavitra Roychoudhury;  Lea M. Starita;  Michael Famulare;  Helen Y. Chu;  Jay Shendure;  Keith R. Jerome;  Catie Anderson;  Karthik Gangavarapu;  Mark Zeller;  Emily Spencer;  Kristian G. Andersen;  Duncan MacCannell;  Clinton R. Paden;  Yan Li;  Jing Zhang;  Suxiang Tong;  Gregory Armstrong;  Scott Morrow;  Matthew Willis;  Bela T. Matyas;  Sundari Mase;  Olivia Kasirye;  Maggie Park;  Godfred Masinde;  Curtis Chan;  Alexander T. Yu;  Shua J. Chai;  Elsa Villarino;  Brandon Bonin;  Debra A. Wadford;  Charles Y. Chiu
收藏  |  浏览/下载:15/0  |  提交时间:2020/08/09
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.