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Suppressed migrating diurnal tides in the mesosphere and lower thermosphere region during El Niño in northern winter and its possible mechanism 期刊论文
Atmospheric Chemistry and Physics, 2022
作者:  Yetao Cen, Chengyun Yang, Tao Li, James M. Russell III, and Xiankang Dou
收藏  |  浏览/下载:9/0  |  提交时间:2022/06/24
Sustainable intensification for a larger global rice bowl 期刊论文
Nature Communications, 2021
作者:  Yuan, Shen;  Linquist, Bruce A.;  Wilson, Lloyd T.;  Cassman, Kenneth G.;  Stuart, Alexander M.;  Pede, Valerien;  Miro, Berta;  Saito, Kazuki;  Agustiani, Nurwulan;  Aristya, Vina Eka;  Krisnadi, Leonardus Y.;  Zanon, Alencar Junior;  Heinemann, Alexandre Bryan;  Carracelas, Gonzalo;  Subash, Nataraja;  Brahmanand, Pothula S.;  Li, Tao;  Peng, Shaobing;  Grassini, Patricio
收藏  |  浏览/下载:15/0  |  提交时间:2021/12/15
Boiled or Bottled: Regional and Seasonal Exposures to Drinking Water Contamination and Household Air Pollution in Rural China 期刊论文
Environmental Health Perspectives, 2020
作者:  Alasdair Cohen;  Ajay Pillarisetti;  Qing Luo;  Qi Zhang;  Hongxing Li;  Gemei Zhong;  Gang Zhu;  John M. ColfordJr.;  Kirk R. Smith;  Isha Ray;  Yong Tao
收藏  |  浏览/下载:7/0  |  提交时间:2020/12/07
Methane emissions from natural gas vehicles in China 期刊论文
Nature Communications, 2020
作者:  Da Pan;  Lei Tao;  Kang Sun;  Levi M. Golston;  David J. Miller;  Tong Zhu;  Yue Qin;  Yan Zhang;  Denise L. Mauzerall;  Mark A. Zondlo
收藏  |  浏览/下载:18/0  |  提交时间:2020/09/14
Modelling climate change impacts on maize yields under low nitrogen input conditions in sub‐Saharan Africa 期刊论文
Global Change Biology, 2020
作者:  Gatien N. Falconnier;  Marc Corbeels;  Kenneth J. Boote;  Franç;  ois Affholder;  Myriam Adam;  Dilys S. MacCarthy;  Alex C. Ruane;  Claas Nendel;  Anthony M. Whitbread;  É;  ric Justes;  Lajpat R. Ahuja;  Folorunso M. Akinseye;  Isaac N. Alou;  Kokou A. Amouzou;  Saseendran S. Anapalli;  Christian Baron;  Bruno Basso;  Fré;  ;  ric Baudron;  Patrick Bertuzzi;  Andrew J. Challinor;  Yi Chen;  Delphine Deryng;  Maha L. Elsayed;  Babacar Faye;  Thomas Gaiser;  Marcelo Galdos;  Sebastian Gayler;  Edward Gerardeaux;  Michel Giner;  Brian Grant;  Gerrit Hoogenboom;  Esther S. Ibrahim;  Bahareh Kamali;  Kurt Christian Kersebaum;  Soo‐;  Hyung Kim;  Michael van der Laan;  Louise Leroux;  Jon I. Lizaso;  Bernardo Maestrini;  Elizabeth A. Meier;  Fasil Mequanint;  Alain Ndoli;  Cheryl H. Porter;  Eckart Priesack;  Dominique Ripoche;  Tesfaye S. Sida;  Upendra Singh;  Ward N. Smith;  Amit Srivastava;  Sumit Sinha;  Fulu Tao;  Peter J. Thorburn;  Dennis Timlin;  Bouba Traore;  Tracy Twine;  Heidi Webber
收藏  |  浏览/下载:10/0  |  提交时间:2020/08/25
Biofuel burning and human respiration bias on satellite estimates of fossil fuel CO(2)emissions 期刊论文
ENVIRONMENTAL RESEARCH LETTERS, 2020, 15 (7)
作者:  Ciais, P.;  Wang, Y.;  Andrew, R.;  Breon, F. M.;  Chevallier, F.;  Broquet, G.;  Nabuurs, G. J.;  Peters, G.;  McGrath, M.;  Meng, W.;  Zheng, B.;  Tao, S.
收藏  |  浏览/下载:10/0  |  提交时间:2020/08/18
fossil fuel emissions  satellites  biofuels  
A dominant autoinflammatory disease caused by non-cleavable variants of RIPK1 期刊论文
NATURE, 2020, 577 (7788) : 109-+
作者:  Tao, Panfeng;  Sun, Jinqiao;  Wu, Zheming;  Wang, Shihao;  Wang, Jun;  Li, Wanjin;  Pan, Heling;  Bai, Renkui;  Zhang, Jiahui;  Wang, Ying;  Lee, Pui Y.;  Ying, Wenjing;  Zhou, Qinhua;  Hou, Jia;  Wang, Wenjie;  Sun, Bijun;  Yang, Mi;  Liu, Danru;  Fang, Ran;  Han, Huan;  Yang, Zhaohui;  Huang, Xin;  Li, Haibo;  Deuitch, Natalie;  Zhang, Yuan;  Dissanayake, Dilan;  Haude, Katrina;  McWalter, Kirsty;  Roadhouse, Chelsea;  MacKenzie, Jennifer J.;  Laxer, Ronald M.;  Aksentijevich, Ivona;  Yu, Xiaomin;  Wang, Xiaochuan;  Yuan, Junying;  Zhou, Qing
收藏  |  浏览/下载:21/0  |  提交时间:2020/07/03

Activation of RIPK1 controls TNF-mediated apoptosis, necroptosis and inflammatory pathways(1). Cleavage of human and mouse RIPK1 after residues D324 and D325, respectively, by caspase-8 separates the RIPK1 kinase domain from the intermediate and death domains. The D325A mutation in mouse RIPK1 leads to embryonic lethality during mouse development(2,3). However, the functional importance of blocking caspase-8-mediated cleavage of RIPK1 on RIPK1 activation in humans is unknown. Here we identify two families with variants in RIPK1 (D324V and D324H) that lead to distinct symptoms of recurrent fevers and lymphadenopathy in an autosomaldominant manner. Impaired cleavage of RIPK1 D324 variants by caspase-8 sensitized patients'  peripheral blood mononuclear cells to RIPK1 activation, apoptosis and necroptosis induced by TNF. The patients showed strong RIPK1-dependent activation of inflammatory signalling pathways and overproduction of inflammatory cytokines and chemokines compared with unaffected controls. Furthermore, we show that expression of the RIPK1 mutants D325V or D325H in mouse embryonic fibroblasts confers not only increased sensitivity to RIPK1 activation-mediated apoptosis and necroptosis, but also induction of pro-inflammatory cytokines such as IL-6 and TNF. By contrast, patient-derived fibroblasts showed reduced expression of RIPK1 and downregulated production of reactive oxygen species, resulting in resistance to necroptosis and ferroptosis. Together, these data suggest that human non-cleavable RIPK1 variants promote activation of RIPK1, and lead to an autoinflammatory disease characterized by hypersensitivity to apoptosis and necroptosis and increased inflammatory response in peripheral blood mononuclear cells, as well as a compensatory mechanism to protect against several pro-death stimuli in fibroblasts.


  
Structure of nevanimibe-bound tetrameric human ACAT1 期刊论文
NATURE, 2020, 581 (7808) : 339-U214
作者:  Ma, Xiyu;  Claus, Lucas A. N.;  Leslie, Michelle E.;  Tao, Kai;  Wu, Zhiping;  Liu, Jun;  Yu, Xiao;  Li, Bo;  Zhou, Jinggeng;  Savatin, Daniel V.;  Peng, Junmin;  Tyler, Brett M.;  Heese, Antje;  Russinova, Eugenia;  He, Ping;  Shan, Libo
收藏  |  浏览/下载:28/0  |  提交时间:2020/07/03

The structure of human ACAT1 in complex with the inhibitor nevanimibe is resolved by cryo-electron microscopy.


Cholesterol is an essential component of mammalian cell membranes, constituting up to 50% of plasma membrane lipids. By contrast, it accounts for only 5% of lipids in the endoplasmic reticulum (ER)(1). The ER enzyme sterol O-acyltransferase 1 (also named acyl-coenzyme A:cholesterol acyltransferase, ACAT1) transfers a long-chain fatty acid to cholesterol to form cholesteryl esters that coalesce into cytosolic lipid droplets. Under conditions of cholesterol overload, ACAT1 maintains the low cholesterol concentration of the ER and thereby has an essential role in cholesterol homeostasis(2,3). ACAT1 has also been implicated in Alzheimer'  s disease(4), atherosclerosis(5) and cancers(6). Here we report a cryo-electron microscopy structure of human ACAT1 in complex with nevanimibe(7), an inhibitor that is in clinical trials for the treatment of congenital adrenal hyperplasia. The ACAT1 holoenzyme is a tetramer that consists of two homodimers. Each monomer contains nine transmembrane helices (TMs), six of which (TM4-TM9) form a cavity that accommodates nevanimibe and an endogenous acyl-coenzyme A. This cavity also contains a histidine that has previously been identified as essential for catalytic activity(8). Our structural data and biochemical analyses provide a physical model to explain the process of cholesterol esterification, as well as details of the interaction between nevanimibe and ACAT1, which may help to accelerate the development of ACAT1 inhibitors to treat related diseases.


  
The acidity of atmospheric particles and clouds 期刊论文
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2020, 20 (8) : 4809-4888
作者:  Pye, Havala O. T.;  Nenes, Athanasios;  Alexander, Becky;  Ault, Andrew P.;  Barth, Mary C.;  Clegg, Simon L.;  Collett, Jeffrey L., Jr.;  Fahey, Kathleen M.;  Hennigan, Christopher J.;  Herrmann, Hartmut;  Kanakidou, Maria;  Kelly, James T.;  Ku, I-Ting;  McNeill, V. Faye;  Riemer, Nicole;  Schaefer, Thomas;  Shi, Guoliang;  Tilgner, Andreas;  Walker, John T.;  Wang, Tao;  Weber, Rodney;  Xing, Jia;  Zaveri, Rahul A.;  Zuend, Andreas
收藏  |  浏览/下载:14/0  |  提交时间:2020/07/02
A distal enhancer at risk locus 11q13.5 promotes suppression of colitis by T-reg cells 期刊论文
NATURE, 2020
作者:  Ma, Xiyu;  Claus, Lucas A. N.;  Leslie, Michelle E.;  Tao, Kai;  Wu, Zhiping;  Liu, Jun;  Yu, Xiao;  Li, Bo;  Zhou, Jinggeng;  Savatin, Daniel V.;  Peng, Junmin;  Tyler, Brett M.;  Heese, Antje;  Russinova, Eugenia;  He, Ping;  Shan, Libo
收藏  |  浏览/下载:38/0  |  提交时间:2020/07/03

Genetic variations underlying susceptibility to complex autoimmune and allergic diseases are concentrated within noncoding regulatory elements termed enhancers(1). The functions of a large majority of disease-associated enhancers are unknown, in part owing to their distance from the genes they regulate, a lack of understanding of the cell types in which they operate, and our inability to recapitulate the biology of immune diseases in vitro. Here, using shared synteny to guide loss-of-function analysis of homologues of human enhancers in mice, we show that the prominent autoimmune and allergic disease risk locus at chromosome 11q13.5(2-7) contains a distal enhancer that is functional in CD4(+) regulatory T (T-reg) cells and required for T-reg-mediated suppression of colitis. The enhancer recruits the transcription factors STAT5 and NF-kappa B to mediate signal-driven expression of Lrrc32, which encodes the protein glycoprotein A repetitions predominant (GARP). Whereas disruption of the Lrrc32 gene results in early lethality, mice lacking the enhancer are viable but lack GARP expression in Foxp3(+) T-reg cells, which are unable to control colitis in a cell-transfer model of the disease. In human T-reg cells, the enhancer forms conformational interactions with the promoter of LRRC32 and enhancer risk variants are associated with reduced histone acetylation and GARP expression. Finally, functional fine-mapping of 11q13.5 using CRISPR-activation (CRISPRa) identifies a CRISPRa-responsive element in the vicinity of risk variant rs11236797 capable of driving GARP expression. These findings provide a mechanistic basis for association of the 11q13.5 risk locus with immune-mediated diseases and identify GARP as a potential target in their therapy.


Shared synteny guides loss-of-function analysis of human enhancer homologues in mice, identifying a distal enhancer at the autoimmune and allergic disease risk locus at chromosome 11q13.5 whose function in regulatory T cells provides a mechanistic basis for its role in disease.