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A bimodal distribution of haze in Pluto鈥檚 atmosphere 期刊论文
Nature Communications, 2022
作者:  Fan, Siteng;  Gao, Peter;  Zhang, Xi;  Adams, Danica J.;  Kutsop, Nicholas W.;  Bierson, Carver J.;  Liu, Chao;  Yang, Jiani;  Young, Leslie A.;  Cheng, Andrew F.;  Yung, Yuk L.
收藏  |  浏览/下载:18/0  |  提交时间:2022/01/29
Peta–electron volt gamma-ray emission from the Crab Nebula 期刊论文
Science, 2021
作者:  The LHAASO Collaboration*†;  Zhen Cao;  F. Aharonian;  Q. An;  Axikegu;  L. X. Bai;  Y. X. Bai;  Y. W. Bao;  D. Bastieri;  X. J. Bi;  Y. J. Bi;  H. Cai;  J. T. Cai;  Zhe Cao;  J. Chang;  J. F. Chang;  B. M. Chen;  E. S. Chen;  J. Chen;  Liang Chen;  Liang Chen;  Long Chen;  M. J. Chen;  M. L. Chen;  Q. H. Chen;  S. H. Chen;  S. Z. Chen;  T. L. Chen;  X. L. Chen;  Y. Chen;  N. Cheng;  Y. D. Cheng;  S. W. Cui;  X. H. Cui;  Y. D. Cui;  B. D’Ettorre Piazzoli;  B. Z. Dai;  H. L. Dai;  Z. G. Dai;  Danzengluobu;  D. della Volpe;  X. J. Dong;  K. K. Duan;  J. H. Fan;  Y. Z. Fan;  Z. X. Fan;  J. Fang;  K. Fang;  C. F. Feng;  L. Feng;  S. H. Feng;  Y. L. Feng;  B. Gao;  C. D. Gao;  L. Q. Gao;  Q. Gao;  W. Gao;  M. M. Ge;  L. S. Geng;  G. H. Gong;  Q. B. Gou;  M. H. Gu;  F. L. Guo;  J. G. Guo;  X. L. Guo;  Y. Q. Guo;  Y. Y. Guo;  Y. A. Han;  H. H. He;  H. N. He;  J. C. He;  S. L. He;  X. B. He;  Y. He;  M. Heller;  Y. K. Hor;  C. Hou;  X. Hou;  H. B. Hu;  S. Hu;  S. C. Hu;  X. J. Hu;  D. H. Huang;  Q. L. Huang;  W. H. Huang;  X. T. Huang;  X. Y. Huang;  Z. C. Huang;  F. Ji;  X. L. Ji;  H. Y. Jia;  K. Jiang;  Z. J. Jiang;  C. Jin;  T. Ke;  D. Kuleshov;  K. Levochkin;  B. B. Li;  Cheng Li;  Cong Li;  F. Li;  H. B. Li;  H. C. Li;  H. Y. Li;  Jian Li;  Jie Li;  K. Li;  W. L. Li;  X. R. Li;  Xin Li;  Xin Li;  Y. Li;  Y. Z. Li;  Zhe Li;  Zhuo Li;  E. W. Liang;  Y. F. Liang;  S. J. Lin;  B. Liu;  C. Liu;  D. Liu;  H. Liu;  H. D. Liu;  J. Liu;  J. L. Liu;  J. S. Liu;  J. Y. Liu;  M. Y. Liu;  R. Y. Liu;  S. M. Liu;  W. Liu;  Y. Liu;  Y. N. Liu;  Z. X. Liu;  W. J. Long;  R. Lu;  H. K. Lv;  B. Q. Ma;  L. L. Ma;  X. H. Ma;  J. R. Mao;  A. Masood;  Z. Min;  W. Mitthumsiri;  T. Montaruli;  Y. C. Nan;  B. Y. Pang;  P. Pattarakijwanich;  Z. Y. Pei;  M. Y. Qi;  Y. Q. Qi;  B. Q. Qiao;  J. J. Qin;  D. Ruffolo;  V. Rulev;  A. Saiz;  L. Shao;  O. Shchegolev;  X. D. Sheng;  J. Y. Shi;  H. C. Song;  Yu. V. Stenkin;  V. Stepanov;  Y. Su;  Q. N. Sun;  X. N. Sun;  Z. B. Sun;  P. H. T. Tam;  Z. B. Tang;  W. W. Tian;  B. D. Wang;  C. Wang;  H. Wang;  H. G. Wang;  J. C. Wang;  J. S. Wang;  L. P. Wang;  L. Y. Wang;  R. N. Wang;  Wei Wang;  Wei Wang;  X. G. Wang;  X. J. Wang;  X. Y. Wang;  Y. Wang;  Y. D. Wang;  Y. J. Wang;  Y. P. Wang;  Z. H. Wang;  Z. X. Wang;  Zhen Wang;  Zheng Wang;  D. M. Wei;  J. J. Wei;  Y. J. Wei;  T. Wen;  C. Y. Wu;  H. R. Wu;  S. Wu;  W. X. Wu;  X. F. Wu;  S. Q. Xi;  J. Xia;  J. J. Xia;  G. M. Xiang;  D. X. Xiao;  G. Xiao;  H. B. Xiao;  G. G. Xin;  Y. L. Xin;  Y. Xing;  D. L. Xu;  R. X. Xu;  L. Xue;  D. H. Yan;  J. Z. Yan;  C. W. Yang;  F. F. Yang;  J. Y. Yang;  L. L. Yang;  M. J. Yang;  R. Z. Yang;  S. B. Yang;  Y. H. Yao;  Z. G. Yao;  Y. M. Ye;  L. Q. Yin;  N. Yin;  X. H. You;  Z. Y. You;  Y. H. Yu;  Q. Yuan;  H. D. Zeng;  T. X. Zeng;  W. Zeng;  Z. K. Zeng;  M. Zha;  X. X. Zhai;  B. B. Zhang;  H. M. Zhang;  H. Y. Zhang;  J. L. Zhang;  J. W. Zhang;  L. X. Zhang;  Li Zhang;  Lu Zhang;  P. F. Zhang;  P. P. Zhang;  R. Zhang;  S. R. Zhang;  S. S. Zhang;  X. Zhang;  X. P. Zhang;  Y. F. Zhang;  Y. L. Zhang;  Yi Zhang;  Yong Zhang;  B. Zhao;  J. Zhao;  L. Zhao;  L. Z. Zhao;  S. P. Zhao;  F. Zheng;  Y. Zheng;  B. Zhou;  H. Zhou;  J. N. Zhou;  P. Zhou;  R. Zhou;  X. X. Zhou;  C. G. Zhu;  F. R. Zhu;  H. Zhu;  K. J. Zhu;  X. Zuo
收藏  |  浏览/下载:14/0  |  提交时间:2021/07/27
Emerging H5N8 avian influenza viruses 期刊论文
Science, 2021
作者:  Weifeng Shi;  George F. Gao
收藏  |  浏览/下载:17/0  |  提交时间:2021/06/07
Multi‐scale Assessment of Agricultural Consumptive Water Use in California’s Central Valley 期刊论文
Water Resources Research, 2021
作者:  A. J. Wong;  Y. Jin;  J. Medellí;  n‐;  Azuara;  K. T. Paw U;  E. R. Kent;  J. M. Clay;  F. Gao;  J. B. Fisher;  G. Rivera;  C. M. Lee;  K. S. Hemes;  E. Eichelmann;  D. D. Baldocchi;  S. J. Hook
收藏  |  浏览/下载:10/0  |  提交时间:2021/05/14
CATMoS: Collaborative Acute Toxicity Modeling Suite 期刊论文
Environmental Health Perspectives, 2021
作者:  Kamel Mansouri;  Agnes L. Karmaus;  Jeremy Fitzpatrick;  Grace Patlewicz;  Prachi Pradeep;  Domenico Alberga;  Nathalie Alepee;  Timothy E.H. Allen;  Dave Allen;  Vinicius M. Alves;  Carolina H. Andrade;  Tyler R. Auernhammer;  Davide Ballabio;  Shannon Bell;  Emilio Benfenati;  Sudin Bhattacharya;  Joyce V. Bastos;  Stephen Boyd;  J.B. Brown;  Stephen J. Capuzzi;  Yaroslav Chushak;  Heather Ciallella;  Alex M. Clark;  Viviana Consonni;  Pankaj R. Daga;  Sean Ekins;  Sherif Farag;  Maxim Fedorov;  Denis Fourches;  Domenico Gadaleta;  Feng Gao;  Jeffery M. Gearhart;  Garett Goh;  Jonathan M. Goodman;  Francesca Grisoni;  Christopher M. Grulke;  Thomas Hartung;  Matthew Hirn;  Pavel Karpov;  Alexandru Korotcov;  Giovanna J. Lavado;  Michael Lawless;  Xinhao Li;  Thomas Luechtefeld;  Filippo Lunghini;  Giuseppe F. Mangiatordi;  Gilles Marcou;  Dan Marsh;  Todd Martin;  Andrea Mauri;  Eugene N. Muratov;  Glenn J. Myatt;  Dac-Trung Nguyen;  Orazio Nicolotti;  Reine Note;  Paritosh Pande;  Amanda K. Parks;  Tyler Peryea;  Ahsan H. Polash;  Robert Rallo;  Alessandra Roncaglioni;  Craig Rowlands;  Patricia Ruiz;  Daniel P. Russo;  Ahmed Sayed;  Risa Sayre;  Timothy Sheils;  Charles Siegel;  Arthur C. Silva;  Anton Simeonov;  Sergey Sosnin;  Noel Southall;  Judy Strickland;  Yun Tang;  Brian Teppen;  Igor V. Tetko;  Dennis Thomas;  Valery Tkachenko;  Roberto Todeschini;  Cosimo Toma;  Ignacio Tripodi;  Daniela Trisciuzzi;  Alexander Tropsha;  Alexandre Varnek;  Kristijan Vukovic;  Zhongyu Wang;  Liguo Wang;  Katrina M. Waters;  Andrew J. Wedlake;  Sanjeeva J. Wijeyesakere;  Dan Wilson;  Zijun Xiao;  Hongbin Yang;  Gergely Zahoranszky-Kohalmi;  Alexey V. Zakharov;  Fagen F. Zhang;  Zhen Zhang;  Tongan Zhao;  Hao Zhu;  Kimberley M. Zorn;  Warren Casey;  Nicole C. Kleinstreuer
收藏  |  浏览/下载:15/0  |  提交时间:2021/05/07
A broadly protective antibody that targets the flavivirus NS1 protein 期刊论文
Science, 2021
作者:  Naphak Modhiran;  Hao Song;  Lidong Liu;  Cheryl Bletchly;  Lou Brillault;  Alberto A. Amarilla;  Xiaoying Xu;  Jianxun Qi;  Yan Chai;  Stacey T. M. Cheung;  Renee Traves;  Yin Xiang Setoh;  Summa Bibby;  Connor A. P. Scott;  Morgan E. Freney;  Natalee D. Newton;  Alexander A. Khromykh;  Keith J. Chappell;  David A. Muller;  Katryn J. Stacey;  Michael J. Landsberg;  Yi Shi;  George F. Gao;  Paul R. Young;  Daniel Watterson
收藏  |  浏览/下载:19/0  |  提交时间:2021/01/15
Coevolution of policy and science during the pandemic 期刊论文
Science, 2021
作者:  Yian Yin;  Jian Gao;  Benjamin F. Jones;  Dashun Wang
收藏  |  浏览/下载:11/0  |  提交时间:2021/01/15
Structural transitions in influenza haemagglutinin at membrane fusion pH 期刊论文
NATURE, 2020, 583 (7814) : 150-+
作者:  Wei, Kevin;  Korsunsky, Ilya;  Marshall, Jennifer L.;  Gao, Anqi;  Watts, Gerald F. M.;  Major, Triin;  Croft, Adam P.;  Watts, Jordan;  Blazar, Philip E.;  Lange, Jeffrey K.;  Thornhill, Thomas S.;  Filer, Andrew;  Raza, Karim;  Donlin, Laura T.;  Siebel, Christian W.
收藏  |  浏览/下载:20/0  |  提交时间:2020/07/03

Cryo-electron microscopy studies of the influenza haemagglutinin glycoprotein at the low pH of host endosomes reveals structural intermediates, offering a dynamic view of how the protein mediates membrane fusion.


Infection by enveloped viruses involves fusion of their lipid envelopes with cellular membranes to release the viral genome into cells. For HIV, Ebola, influenza and numerous other viruses, envelope glycoproteins bind the infecting virion to cell-surface receptors and mediate membrane fusion. In the case of influenza, the receptor-binding glycoprotein is the haemagglutinin (HA), and following receptor-mediated uptake of the bound virus by endocytosis(1), it is the HA that mediates fusion of the virus envelope with the membrane of the endosome(2). Each subunit of the trimeric HA consists of two disulfide-linked polypeptides, HA1 and HA2. The larger, virus-membrane-distal, HA1 mediates receptor binding  the smaller, membrane-proximal, HA2 anchors HA in the envelope and contains the fusion peptide, a region that is directly involved in membrane interaction(3). The low pH of endosomes activates fusion by facilitating irreversible conformational changes in the glycoprotein. The structures of the initial HA at neutral pH and the final HA at fusion pH have been investigated by electron microscopy(4,5) and X-ray crystallography(6-8). Here, to further study the process of fusion, we incubate HA for different times at pH 5.0 and directly image structural changes using single-particle cryo-electron microscopy. We describe three distinct, previously undescribed forms of HA, most notably a 150 angstrom-long triple-helical coil of HA2, which may bridge between the viral and endosomal membranes. Comparison of these structures reveals concerted conformational rearrangements through which the HA mediates membrane fusion.


  
Action of a minimal contractile bactericidal nanomachine 期刊论文
NATURE, 2020, 580 (7805) : 658-+
作者:  Peng, Ruchao;  Xu, Xin;  Jing, Jiamei;  Wang, Min;  Peng, Qi;  Liu, Sheng;  Wu, Ying;  Bao, Xichen;  Wang, Peiyi;  Qi, Jianxun;  Gao, George F.;  Shi, Yi
收藏  |  浏览/下载:13/0  |  提交时间:2020/07/03

The authors report near-atomic resolution structures of the R-type bacteriocin from Pseudomonas aeruginosa in the pre-contraction and post-contraction states, and these structures provide insight into the mechanism of action of molecular syringes.


R-type bacteriocins are minimal contractile nanomachines that hold promise as precision antibiotics(1-4). Each bactericidal complex uses a collar to bridge a hollow tube with a contractile sheath loaded in a metastable state by a baseplate scaffold(1,2). Fine-tuning of such nucleic acid-free protein machines for precision medicine calls for an atomic description of the entire complex and contraction mechanism, which is not available from baseplate structures of the (DNA-containing) T4 bacteriophage(5). Here we report the atomic model of the complete R2 pyocin in its pre-contraction and post-contraction states, each containing 384 subunits of 11 unique atomic models of 10 gene products. Comparison of these structures suggests the following sequence of events during pyocin contraction: tail fibres trigger lateral dissociation of baseplate triplexes  the dissociation then initiates a cascade of events leading to sheath contraction  and this contraction converts chemical energy into mechanical force to drive the iron-tipped tube across the bacterial cell surface, killing the bacterium.


  
Quantifying Geochemical Processes of Arsenic Mobility in Groundwater From an Inland Basin Using a Reactive Transport Model 期刊论文
WATER RESOURCES RESEARCH, 2020, 56 (2)
作者:  Gao, Z. P.;  Jia, Y. F.;  Guo, H. M.;  Zhang, D.;  Zhao, B.
收藏  |  浏览/下载:8/0  |  提交时间:2020/07/02
arsenic  desorption  Hetao Basin  kinetic  organic matter  reductive dissolution