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SARS-CoV-2 D614G variant exhibits efficient replication ex vivo and transmission in vivo 期刊论文
Science, 2020
作者:  Yixuan J. Hou;  Shiho Chiba;  Peter Halfmann;  Camille Ehre;  Makoto Kuroda;  Kenneth H. Dinnon;  Sarah R. Leist;  Alexandra Schäfer;  Noriko Nakajima;  Kenta Takahashi;  Rhianna E. Lee;  Teresa M. Mascenik;  Rachel Graham;  Caitlin E. Edwards;  Longping V. Tse;  Kenichi Okuda;  Alena J. Markmann;  Luther Bartelt;  Aravinda de Silva;  David M. Margolis;  Richard C. Boucher;  Scott H. Randell;  Tadaki Suzuki;  Lisa E. Gralinski;  Yoshihiro Kawaoka;  Ralph S. Baric
收藏  |  浏览/下载:40/0  |  提交时间:2020/12/22
Somatic inflammatory gene mutations in human ulcerative colitis epithelium 期刊论文
NATURE, 2020, 577 (7789) : 254-+
作者:  Nanki, Kosaku;  Fujii, Masayuki;  Shimokawa, Mariko;  Matano, Mami;  Nishikori, Shingo;  Date, Shoichi;  Takano, Ai;  Toshimitsu, Kohta;  Ohta, Yuki;  Takahashi, Sirirat;  Sugimoto, Shinya;  Ishimaru, Kazuhiro;  Kawasaki, Kenta;  Nagai, Yoko;  Ishii, Ryota;  Yoshida, Kosuke;  Sasaki, Nobuo;  Hibi, Toshifumi;  Ishihara, Soichiro;  Kanai, Takanori;  Sato, Toshiro
收藏  |  浏览/下载:24/0  |  提交时间:2020/07/03

With ageing, normal human tissues experience an expansion of somatic clones that carry cancer mutations(1-7). However, whether such clonal expansion exists in the non-neoplastic intestine remains unknown. Here, using whole-exome sequencing data from 76 clonal human colon organoids, we identify a unique pattern of somatic mutagenesis in the inflamed epithelium of patients with ulcerative colitis. The affected epithelium accumulates somatic mutations in multiple genes that are related to IL-17 signalling-including NFKBIZ, ZC3H12A and PIGR, which are genes that are rarely affected in colon cancer. Targeted sequencing validates the pervasive spread of mutations that are related to IL-17 signalling. Unbiased CRISPR-based knockout screening in colon organoids reveals that the mutations confer resistance to the proapoptotic response that is induced by IL-17A. Some of these genetic mutations are known to exacerbate experimental colitis in mice(8-11), and somatic mutagenesis in human colon epithelium may be causally linked to the inflammatory process. Our findings highlight a genetic landscape that adapts to a hostile microenvironment, and demonstrate its potential contribution to the pathogenesis of ulcerative colitis.