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The role of terrestrial productivity and hydrology in regulating aquatic dissolved organic carbon concentrations in boreal catchments 期刊论文
Global Change Biology, 2022
作者:  Xudan Zhu;  Liang Chen;  Jukka Pumpanen;  Anne Ojala;  John Zobitz;  Xuan Zhou;  Hjalmar Laudon;  Marjo Palviainen;  Kimmo Neitola;  Frank Berninger
收藏  |  浏览/下载:11/0  |  提交时间:2022/02/23
Identification of Integrator-PP2A complex (INTAC), an RNA polymerase II phosphatase 期刊论文
Science, 2020
作者:  Hai Zheng;  Yilun Qi;  Shibin Hu;  Xuan Cao;  Congling Xu;  Zhinang Yin;  Xizi Chen;  Yan Li;  Weida Liu;  Jie Li;  Jiawei Wang;  Gang Wei;  Kaiwei Liang;  Fei Xavier Chen;  Yanhui Xu
收藏  |  浏览/下载:11/0  |  提交时间:2020/11/30
DNA vaccine protection against SARS-CoV-2 in rhesus macaques 期刊论文
Science, 2020
作者:  Jingyou Yu;  Lisa H. Tostanoski;  Lauren Peter;  Noe B. Mercado;  Katherine McMahan;  Shant H. Mahrokhian;  Joseph P. Nkolola;  Jinyan Liu;  Zhenfeng Li;  Abishek Chandrashekar;  David R. Martinez;  Carolin Loos;  Caroline Atyeo;  Stephanie Fischinger;  John S. Burke;  Matthew D. Slein;  Yuezhou Chen;  Adam Zuiani;  Felipe J. N. Lelis;  Meghan Travers;  Shaghayegh Habibi;  Laurent Pessaint;  Alex Van Ry;  Kelvin Blade;  Renita Brown;  Anthony Cook;  Brad Finneyfrock;  Alan Dodson;  Elyse Teow;  Jason Velasco;  Roland Zahn;  Frank Wegmann;  Esther A. Bondzie;  Gabriel Dagotto;  Makda S. Gebre;  Xuan He;  Catherine Jacob-Dolan;  Marinela Kirilova;  Nicole Kordana;  Zijin Lin;  Lori F. Maxfield;  Felix Nampanya;  Ramya Nityanandam;  John D. Ventura;  Huahua Wan;  Yongfei Cai;  Bing Chen;  Aaron G. Schmidt;  Duane R. Wesemann;  Ralph S. Baric;  Galit Alter;  Hanne Andersen;  Mark G. Lewis;  Dan H. Barouch
收藏  |  浏览/下载:18/0  |  提交时间:2020/08/18
Impaired cell fate through gain-of-function mutations in a chromatin reader 期刊论文
NATURE, 2020, 577 (7788) : 121-+
作者:  Wan, Liling;  Chong, Shasha;  Xuan, Fan;  Liang, Angela;  Cui, Xiaodong;  Gates, Leah;  Carroll, Thomas S.;  Li, Yuanyuan;  Feng, Lijuan;  Chen, Guochao;  Wang, Shu-Ping;  Ortiz, Michael V.;  Daley, Sara K.;  Wang, Xiaolu;  Xuan, Hongwen;  Kentsis, Alex;  Muir, Tom W.;  Roeder, Robert G.;  Li, Haitao;  Li, Wei;  Tjian, Robert;  Wen, Hong;  Allis, C. David
收藏  |  浏览/下载:10/0  |  提交时间:2020/07/03

Modifications of histone proteins have essential roles in normal development and human disease. Recognition of modified histones by '  reader'  proteins is a key mechanism that mediates the function of histone modifications, but how the dysregulation of these readers might contribute to disease remains poorly understood. We previously identified the ENL protein as a reader of histone acetylation via its YEATS domain, linking it to the expression of cancer-driving genes in acute leukaemia1. Recurrent hotspot mutations have been found in the ENL YEATS domain in Wilms tumour2,3, the most common type of paediatric kidney cancer. Here we show, using human and mouse cells, that these mutations impair cell-fate regulation by conferring gain-of-function in chromatin recruitment and transcriptional control. ENL mutants induce gene-expression changes that favour a premalignant cell fate, and, in an assay for nephrogenesis using murine cells, result in undifferentiated structures resembling those observed in human Wilms tumour. Mechanistically, although bound to largely similar genomic loci as the wild-type protein, ENL mutants exhibit increased occupancy at a subset of targets, leading to a marked increase in the recruitment and activity of transcription elongation machinery that enforces active transcription from target loci. Furthermore, ectopically expressed ENL mutants exhibit greater self-association and form discrete and dynamic nuclear puncta that are characteristic of biomolecular hubs consisting of local high concentrations of regulatory factors. Such mutation-driven ENL self-association is functionally linked to enhanced chromatin occupancy and gene activation. Collectively, our findings show that hotspot mutations in a chromatinreader domain drive self-reinforced recruitment, derailing normal cell-fate control during development and leading to an oncogenic outcome.


  
Patterns of somatic structural variation in human cancer genomes 期刊论文
NATURE, 2020, 578 (7793) : 112-+
作者:  Wan, Liling;  Chong, Shasha;  Xuan, Fan;  Liang, Angela;  Cui, Xiaodong;  Gates, Leah;  Carroll, Thomas S.;  Li, Yuanyuan;  Feng, Lijuan;  Chen, Guochao;  Wang, Shu-Ping;  Ortiz, Michael V.;  Daley, Sara K.;  Wang, Xiaolu;  Xuan, Hongwen;  Kentsis, Alex;  Muir, Tom W.;  Roeder, Robert G.;  Li, Haitao;  Li, Wei;  Tjian, Robert;  Wen, Hong;  Allis, C. David
收藏  |  浏览/下载:36/0  |  提交时间:2020/07/03

A key mutational process in cancer is structural variation, in which rearrangements delete, amplify or reorder genomic segments that range in size from kilobases to whole chromosomes(1-7). Here we develop methods to group, classify and describe somatic structural variants, using data from the Pan-Cancer Analysis of Whole Genomes (PCAWG) Consortium of the International Cancer Genome Consortium (ICGC) and The Cancer Genome Atlas (TCGA), which aggregated whole-genome sequencing data from 2,658 cancers across 38 tumour types(8). Sixteen signatures of structural variation emerged. Deletions have a multimodal size distribution, assort unevenly across tumour types and patients, are enriched in late-replicating regions and correlate with inversions. Tandem duplications also have a multimodal size distribution, but are enriched in early-replicating regions-as are unbalanced translocations. Replication-based mechanisms of rearrangement generate varied chromosomal structures with low-level copy-number gains and frequent inverted rearrangements. One prominent structure consists of 2-7 templates copied from distinct regions of the genome strung together within one locus. Such cycles of templated insertions correlate with tandem duplications, and-in liver cancerfrequently activate the telomerase gene TERT. A wide variety of rearrangement processes are active in cancer, which generate complex configurations of the genome upon which selection can act.


  
Satellite testing of a gravitationally induced quantum decoherence model 期刊论文
SCIENCE, 2019, 366 (6461) : 132-+
作者:  Xu, Ping;  Ma, Yiqiu;  Ren, Ji-Gang;  Yong, Hai-Lin;  Ralph, Timothy C.;  Liao, Sheng-Kai;  Yin, Juan;  Liu, Wei-Yue;  Cai, Wen-Qi;  Han, Xuan;  Wu, Hui-Nan;  Wang, Wei-Yang;  Li, Feng-Zhi;  Yang, Meng;  Lin, Feng-Li;  Li, Li;  Liu, Nai-Le;  Chen, Yu-Ao;  Lu, Chao-Yang;  Chen, Yanbei;  Fan, Jingyun;  Peng, Cheng-Zhi;  Pan, Jian-Wei
收藏  |  浏览/下载:15/0  |  提交时间:2019/11/27
The gut microbiome in atherosclerotic cardiovascular disease 期刊论文
NATURE COMMUNICATIONS, 2017, 8
作者:  Jie, Zhuye;  Xia, Huihua;  Zhong, Shi-Long;  Feng, Qiang;  Li, Shenghui;  Liang, Suisha;  Zhong, Huanzi;  Liu, Zhipeng;  Gao, Yuan;  Zhao, Hui;  Zhang, Dongya;  Su, Zheng;  Fang, Zhiwei;  Lan, Zhou;  Li, Junhua;  Xiao, Liang;  Li, Jun;  Li, Ruijun;  Li, Xiaoping;  Li, Fei;  Ren, Huahui;  Huang, Yan;  Peng, Yangqing;  Li, Guanglei;  Wen, Bo;  Dong, Bo;  Chen, Ji-Yan;  Geng, Qing-Shan;  Zhang, Zhi-Wei;  Yang, Huanming;  Wang, Jian;  Wang, Jun;  Zhang, Xuan;  Madsen, Lise;  Brix, Susanne;  Ning, Guang;  Xu, Xun;  Liu, Xin;  Hou, Yong;  Jia, Huijue;  He, Kunlun;  Kristiansen, Karsten
收藏  |  浏览/下载:15/0  |  提交时间:2019/11/27
Kinase-controlled phase transition of membraneless organelles in mitosis 期刊论文
NATURE, 2018, 559 (7713) : 211-+
作者:  Rai, Arpan Kumar;  Chen, Jia-Xuan;  Selbach, Matthias;  Pelkmans, Lucas
收藏  |  浏览/下载:6/0  |  提交时间:2019/11/27
Liver-target nanotechnology facilitates berberine to ameliorate cardio-metabolic diseases 期刊论文
NATURE COMMUNICATIONS, 2019, 10
作者:  Guo, Hui-Hui;  Feng, Chen-Lin;  Zhang, Wen-Xuan;  Luo, Zhi-Gang;  Zhang, Hong-Juan;  Zhang, Ting-Ting;  Ma, Chen;  Zhan, Yun;  Li, Rui;  Wu, Song;  Abliz, Zeper;  Li, Cong;  Li, Xiao-Lin;  Ma, Xiao-Lei;  Wang, Lu-Lu;  Zheng, Wen-Sheng;  Han, Yan-Xing;  Jiang, Jian-Dong
收藏  |  浏览/下载:10/0  |  提交时间:2019/11/27
Ash1l and lnc-Smad3 coordinate Smad3 locus accessibility to modulate iTreg polarization and T cell autoimmunity 期刊论文
NATURE COMMUNICATIONS, 2017, 8
作者:  Xia, Meng;  Liu, Juan;  Liu, Shuxun;  Chen, Kun;  Lin, Hongyu;  Jiang, Minghong;  Xu, Xiaoqing;  Xue, Yiquan;  Liu, Wei;  Gu, Yan;  Zhang, Xiang;  Li, Zhiqing;  Yi, Lin;  Qian, Youcun;  Zhou, Chen;  Li, Ru;  Zhang, Xuan;  Li, Zhanguo;  Cao, Xuetao
收藏  |  浏览/下载:11/0  |  提交时间:2019/11/27