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Atmospheric nitrogen deposition and its responses to anthropogenic emissions in a global hotspot region 期刊论文
Atmospheric Research, 2020
作者:  Cong-He Zhang, Hao-Ran Guo, Hao Huang, Tian-Yi Ma, ... Xue-Yan Liu
收藏  |  浏览/下载:8/0  |  提交时间:2020/07/21
Measurement report: Evaluation of sources and mixing state of black carbon aerosol under the background of emission reduction in the North China Plain: implications for radiative effect 期刊论文
Atmospheric Chemistry and Physics, 2020
作者:  Qiyuan Wang, Li Li, Jiamao Zhou, Jianhuai Ye, Wenting Dai, Huikun Liu, Yong Zhang, Renjian Zhang, Jie Tian, Yang Chen, Yunfei Wu, Weikang Ran, and Junji Cao
收藏  |  浏览/下载:23/0  |  提交时间:2020/07/21
Measurement report: Quantifying source contribution and radiative forcing of fossil fuel and biomass burning black carbon aerosol in the southeastern margin of Tibetan Plateau 期刊论文
Atmospheric Chemistry and Physics, 2020
作者:  Huikun Liu, Qiyuan Wang, Li Xing, Yong Zhang, Ting Zhang, Weikang Ran, and Junji Cao
收藏  |  浏览/下载:7/0  |  提交时间:2020/06/29
Molecular architecture of lineage allocation and tissue organization in early mouse embryo (vol 572, 528, 2019) 期刊论文
NATURE, 2020, 577 (7791) : E6-E6
作者:  Peng, Guangdun;  Suo, Shengbao;  Cui, Guizhong;  Yu, Fang;  Wang, Ran;  Chen, Jun;  Chen, Shirui;  Liu, Zhiwen;  Chen, Guoyu;  Qian, Yun;  Tam, Patrick P. L.;  Han, Jing-Dong J.;  Jing, Naihe
收藏  |  浏览/下载:15/0  |  提交时间:2020/07/03
Significant methane ebullition from alpine permafrost rivers on the East Qinghai-Tibet Plateau 期刊论文
NATURE GEOSCIENCE, 2020, 13 (5)
作者:  Zhang, Liwei;  Xia, Xinghui;  Liu, Shaoda;  Zhang, Sibo;  Li, Siling;  Wang, Junfeng;  Wang, Gongqin;  Gao, Hui;  Zhang, Zhenrui;  Wang, Qingrui;  Wen, Wu;  Liu, Ran;  Yang, Zhifeng;  Stanley, Emily H.;  Raymond, Peter A.
收藏  |  浏览/下载:11/0  |  提交时间:2020/05/13
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:24/0  |  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.


  
In situ vertical characteristics of optical properties and heating rates of aerosol over Beijing 期刊论文
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2020, 20 (4) : 2603-2622
作者:  Tian, Ping;  Liu, Dantong;  Zhao, Delong;  Yu, Chenjie;  Liu, Quan;  Huang, Mengyu;  Deng, Zhaoze;  Ran, Liang;  Wu, Yunfei;  Ding, Shuo;  Hu, Kang;  Zhao, Gang;  Zhao, Chunsheng;  Ding, Deping
收藏  |  浏览/下载:8/0  |  提交时间:2020/07/02
Apprehending food waste in Asia: policies, practices and promising trends 科技报告
来源:Institute for Global Environmental Strategies. 出版年: 2020
作者:  Sahakian, Marlyne;  Ashoka, Megha Shenoy;  Sama, Tammara;  Watabe, Atsushi;  Yagasa, Ran;  Gamaralalage, Premakumara Jagath Dickella;  Liu, Chen;  Favis, Abigail Marie;  Salama, Czarina
收藏  |  浏览/下载:11/0  |  提交时间:2020/05/22
A self-activating orphan receptor 期刊论文
NATURE, 2020, 579 (7797) : 35-35
作者:  Wang, Lin;  Wu, Juehui;  Li, Jun;  Yang, Hua;  Tang, Tianqi;  Liang, Haijiao;  Zuo, Mianyong;  Wang, Jie;  Liu, Haipeng;  Liu, Feng;  Chen, Jianxia;  Liu, Zhonghua;  Wang, Yang;  Peng, Cheng;  Wu, Xiangyang;  Zheng, Ruijuan;  Huang, Xiaochen;  Ran, Yajun;  Rao, Zihe;  Ge, Baoxue
收藏  |  浏览/下载:11/0  |  提交时间:2020/07/03

The first 3D structure of a full-length G-protein-coupled receptor whose natural activator is unknown has been determined, providing insights into an unusual mode of activation and a basis for discovering therapeutics.


  
Mechanism of adrenergic Ca(V)1.2 stimulation revealed by proximity proteomics 期刊论文
NATURE, 2020, 577 (7792) : 695-+
作者:  Peng, Guangdun;  Suo, Shengbao;  Cui, Guizhong;  Yu, Fang;  Wang, Ran;  Chen, Jun;  Chen, Shirui;  Liu, Zhiwen;  Chen, Guoyu;  Qian, Yun;  Tam, Patrick P. L.;  Han, Jing-Dong J.;  Jing, Naihe
收藏  |  浏览/下载:25/0  |  提交时间:2020/07/03

An in vivo approach to identify proteins whose enrichment near cardiac Ca(V)1.2 channels changes upon beta-adrenergic stimulation finds the G protein Rad, which is phosphorylated by protein kinase A, thereby relieving channel inhibition by Rad and causing an increased Ca2+ current.


Increased cardiac contractility during the fight-or-flight response is caused by beta-adrenergic augmentation of Ca(V)1.2 voltage-gated calcium channels(1-4). However, this augmentation persists in transgenic murine hearts expressing mutant Ca(V)1.2 alpha(1C) and beta subunits that can no longer be phosphorylated by protein kinase A-an essential downstream mediator of beta-adrenergic signalling-suggesting that non-channel factors are also required. Here we identify the mechanism by which beta-adrenergic agonists stimulate voltage-gated calcium channels. We express alpha(1C) or beta(2B) subunits conjugated to ascorbate peroxidase(5) in mouse hearts, and use multiplexed quantitative proteomics(6,7) to track hundreds of proteins in the proximity of Ca(V)1.2. We observe that the calcium-channel inhibitor Rad(8,9), a monomeric G protein, is enriched in the Ca(V)1.2 microenvironment but is depleted during beta-adrenergic stimulation. Phosphorylation by protein kinase A of specific serine residues on Rad decreases its affinity for beta subunits and relieves constitutive inhibition of Ca(V)1.2, observed as an increase in channel open probability. Expression of Rad or its homologue Rem in HEK293T cells also imparts stimulation of Ca(V)1.3 and Ca(V)2.2 by protein kinase A, revealing an evolutionarily conserved mechanism that confers adrenergic modulation upon voltage-gated calcium channels.