GSTDTAP

浏览/检索结果: 共22条,第1-10条 帮助

限定条件                
已选(0)清除 条数/页:   排序方式:
Echolocation in soft-furred tree mice 期刊论文
Science, 2021
作者:  Kai He;  Qi Liu;  Dong-Ming Xu;  Fei-Yan Qi;  Jing Bai;  Shui-Wang He;  Peng Chen;  Xin Zhou;  Wan-Zhi Cai;  Zhong-Zheng Chen;  Zhen Liu;  Xue-Long Jiang;  Peng Shi
收藏  |  浏览/下载:11/0  |  提交时间:2021/06/24
Enhanced harmony search algorithm for sustainable ecological operation of cascade hydropower reservoirs in river ecosystem 期刊论文
Environmental Research Letters, 2021
作者:  Wen-jing Niu;  Zhong-kai Feng;  Zhi-qiang Jiang;  Sen Wang;  Shuai Liu;  Wei Guo;  Zhen-guo Song
收藏  |  浏览/下载:11/0  |  提交时间:2021/05/07
Development of an inactivated vaccine candidate for SARS-CoV-2 期刊论文
Science, 2020
作者:  Qiang Gao;  Linlin Bao;  Haiyan Mao;  Lin Wang;  Kangwei Xu;  Minnan Yang;  Yajing Li;  Ling Zhu;  Nan Wang;  Zhe Lv;  Hong Gao;  Xiaoqin Ge;  Biao Kan;  Yaling Hu;  Jiangning Liu;  Fang Cai;  Deyu Jiang;  Yanhui Yin;  Chengfeng Qin;  Jing Li;  Xuejie Gong;  Xiuyu Lou;  Wen Shi;  Dongdong Wu;  Hengming Zhang;  Lang Zhu;  Wei Deng;  Yurong Li;  Jinxing Lu;  Changgui Li;  Xiangxi Wang;  Weidong Yin;  Yanjun Zhang;  Chuan Qin
收藏  |  浏览/下载:13/0  |  提交时间:2020/07/06
Wintertime particulate matter decrease buffered by unfavorable chemical processes despite emissions reductions in China 期刊论文
Geophysical Research Letters, 2020
作者:  Danny M. Leung;  Hongrong Shi;  Bin Zhao;  Jing Wang;  Elizabeth M. Ding;  Yu Gu;  Haotian Zheng;  Gang Chen;  Kuo‐;  Nan Liou;  Shuxiao Wang;  Jerome D. Fast;  Guangjie Zheng;  Jingkun Jiang;  Xiaoxiao Li;  Jonathan H. Jiang
收藏  |  浏览/下载:12/0  |  提交时间:2020/06/22
Increase of High Molecular Weight Organosulfate With Intensifying Urban Air Pollution in the Megacity Beijing 期刊论文
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2020, 125 (10)
作者:  Xie, Qiaorong;  Li, Ying;  Yue, Siyao;  Su, Sihui;  Cao, Dong;  Xu, Yisheng;  Chen, Jing;  Tong, Haijie;  Su, Hang;  Cheng, Yafang;  Zhao, Wanyu;  Hu, Wei;  Wang, Zhe;  Yang, Ting;  Pan, Xiaole;  Sun, Yele;  Wang, Zifa;  Liu, Cong-Qiang;  Kawamura, Kimitaka;  Jiang, Guibin;  Shiraiwa, Manabu;  Fu, Pingqing
收藏  |  浏览/下载:17/0  |  提交时间:2020/07/02
Organic aerosol  Organosulfates  FT-ICR MS  Secondary organic aerosol  Volatile organic compounds  
Critical land change information enhances the understanding of carbon balance in the United States 期刊论文
Global Change Biology, 2020
作者:  Jinxun Liu;  Benjamin M. Sleeter;  Zhiliang Zhu;  Thomas R. Loveland;  Terry Sohl;  Stephen M. Howard;  Carl H. Key;  Todd Hawbaker;  Shuguang Liu;  Bradley Reed;  Mark A. Cochrane;  Linda S. Heath;  Hong Jiang;  David T. Price;  Jing M. Chen;  Decheng Zhou;  Norman B. Bliss;  Tamara Wilson;  Jason Sherba;  Qiuan Zhu;  Yiqi Luo;  Benjamin Poulter
收藏  |  浏览/下载:7/0  |  提交时间:2020/05/13
Electromechanical coupling in the hyperpolarization-activated K+ channel KAT1 期刊论文
NATURE, 2020, 583 (7814) : 145-+
作者:  Jin, Zhenming;  Du, Xiaoyu;  Xu, Yechun;  Deng, Yongqiang;  Liu, Meiqin;  Zhao, Yao;  Zhang, Bing;  Li, Xiaofeng;  Zhang, Leike;  Peng, Chao;  Duan, Yinkai;  Yu, Jing;  Wang, Lin;  Yang, Kailin;  Liu, Fengjiang;  Jiang, Rendi;  Yang, Xinglou;  You, Tian;  Liu, Xiaoce
收藏  |  浏览/下载:27/0  |  提交时间:2020/07/03

Voltage-gated potassium (K-v) channels coordinate electrical signalling and control cell volume by gating in response to membrane depolarization or hyperpolarization. However, although voltage-sensing domains transduce transmembrane electric field changes by a common mechanism involving the outward or inward translocation of gating charges(1-3), the general determinants of channel gating polarity remain poorly understood(4). Here we suggest a molecular mechanism for electromechanical coupling and gating polarity in non-domain-swapped K-v channels on the basis of the cryo-electron microscopy structure of KAT1, the hyperpolarization-activated K-v channel from Arabidopsis thaliana. KAT1 displays a depolarized voltage sensor, which interacts with a closed pore domain directly via two interfaces and indirectly via an intercalated phospholipid. Functional evaluation of KAT1 structure-guided mutants at the sensor-pore interfaces suggests a mechanism in which direct interaction between the sensor and the C-linker hairpin in the adjacent pore subunit is the primary determinant of gating polarity. We suggest that an inward motion of the S4 sensor helix of approximately 5-7 angstrom can underlie a direct-coupling mechanism, driving a conformational reorientation of the C-linker and ultimately opening the activation gate formed by the S6 intracellular bundle. This direct-coupling mechanism contrasts with allosteric mechanisms proposed for hyperpolarization-activated cyclic nucleotide-gated channels(5), and may represent an unexpected link between depolarization- and hyperpolarization-activated channels.


The cryo-electron microscopy structure of the hyperpolarization-activated K+ channel KAT1 points to a direct-coupling mechanism between S4 movement and the reorientation of the C-linker.


  
Nanoplasma-enabled picosecond switches for ultrafast electronics (vol 579, pg 534, 2020) 期刊论文
NATURE, 2020, 580 (7803) : E8-E8
作者:  Li, Jing;  Xu, Chuanliang;  Lee, Hyung Joo;  Ren, Shancheng;  Zi, Xiaoyuan;  Zhang, Zhiming;  Wang, Haifeng;  Yu, Yongwei;  Yang, Chenghua;  Gao, Xiaofeng;  Hou, Jianguo;  Wang, Linhui;  Yang, Bo;  Yang, Qing;  Ye, Huamao;  Zhou, Tie;  Lu, Xin;  Wang, Yan;  Qu, Min;  Yang, Qingsong;  Zhang, Wenhui;  Shah, Nakul M.;  Pehrsson, Erica C.;  Wang, Shuo;  Wang, Zengjun;  Jiang, Jun;  Zhu, Yan;  Chen, Rui;  Chen, Huan;  Zhu, Feng;  Lian, Bijun;  Li, Xiaoyun;  Zhang, Yun;  Wang, Chao;  Wang, Yue;  Xiao, Guangan;  Jiang, Junfeng;  Yang, Yue;  Liang, Chaozhao;  Hou, Jianquan;  Han, Conghui;  Chen, Ming;  Jiang, Ning;  Zhang, Dahong;  Wu, Song;  Yang, Jinjian;  Wang, Tao;  Chen, Yongliang;  Cai, Jiantong;  Yang, Wenzeng;  Xu, Jun;  Wang, Shaogang;  Gao, Xu;  Wang, Ting;  Sun, Yinghao
收藏  |  浏览/下载:18/0  |  提交时间:2020/07/03
Improved protein structure prediction using potentials from deep learning 期刊论文
NATURE, 2020, 577 (7792) : 706-+
作者:  Ma, Runze;  Cao, Duanyun;  Zhu, Chongqin;  Tian, Ye;  Peng, Jinbo;  Guo, Jing;  Chen, Ji;  Li, Xin-Zheng;  Francisco, Joseph S.;  Zeng, Xiao Cheng;  Xu, Li-Mei;  Wang, En-Ge;  Jiang, Ying
收藏  |  浏览/下载:142/0  |  提交时间:2020/07/03

Protein structure prediction can be used to determine the three-dimensional shape of a protein from its amino acid sequence(1). This problem is of fundamental importance as the structure of a protein largely determines its function(2)  however, protein structures can be difficult to determine experimentally. Considerable progress has recently been made by leveraging genetic information. It is possible to infer which amino acid residues are in contact by analysing covariation in homologous sequences, which aids in the prediction of protein structures(3). Here we show that we can train a neural network to make accurate predictions of the distances between pairs of residues, which convey more information about the structure than contact predictions. Using this information, we construct a potential of mean force(4) that can accurately describe the shape of a protein. We find that the resulting potential can be optimized by a simple gradient descent algorithm to generate structures without complex sampling procedures. The resulting system, named AlphaFold, achieves high accuracy, even for sequences with fewer homologous sequences. In the recent Critical Assessment of Protein Structure Prediction(5) (CASP13)-a blind assessment of the state of the field-AlphaFold created high-accuracy structures (with template modelling (TM) scores(6) of 0.7 or higher) for 24 out of 43 free modelling domains, whereas the next best method, which used sampling and contact information, achieved such accuracy for only 14 out of 43 domains. AlphaFold represents a considerable advance in protein-structure prediction. We expect this increased accuracy to enable insights into the function and malfunction of proteins, especially in cases for which no structures for homologous proteins have been experimentally determined(7).


  
Genetic basis of ruminant headgear and rapid antler regeneration 期刊论文
SCIENCE, 2019, 364 (6446) : 1153-+
作者:  Wang, Yu;  Zhang, Chenzhou;  Wang, Nini;  Li, Zhipeng;  Heller, Rasmus;  Liu, Rong;  Zhao, Yue;  Han, Jiangang;  Pan, Xiangyu;  Zheng, Zhuqing;  Dai, Xueqin;  Chen, Ceshi;  Dou, Mingle;  Peng, Shujun;  Chen, Xianqing;  Liu, Jing;  Li, Ming;  Wang, Kun;  Liu, Chang;  Lin, Zeshan;  Chen, Lei;  Hao, Fei;  Zhu, Wenbo;  Song, Chengchuang;  Zhao, Chen;  Zheng, Chengli;  Wang, Jianming;  Hu, Shengwei;  Li, Cunyuan;  Yang, Hui;  Jiang, Lin;  Li, Guangyu;  Liu, Mingjun;  Sonstegard, Tad S.;  Zhang, Guojie;  Jiang, Yu;  Wang, Wen;  Qiu, Qiang
收藏  |  浏览/下载:12/0  |  提交时间:2019/11/27