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Do More Frequent Temperature Inversions Aggravate Haze Pollution in China? 期刊论文
Geophysical Research Letters, 2022
作者:  Kaixu Bai;  Ke Li;  Jianping Guo;  Wei Cheng;  Xiaofeng Xu
收藏  |  浏览/下载:12/0  |  提交时间:2022/02/23
Global divergent trends of algal blooms detected by satellite during 1982–2018 期刊论文
Global Change Biology, 2022
作者:  Chong Fang;  Kaishan Song;  Hans W Paerl;  Pierre-Andre Jacinthe;  Zhidan Wen;  Ge Liu;  Hui Tao;  Xiaofeng Xu;  Tiit Kutser;  Zongming Wang;  Hongtao Duan;  Kun Shi;  Yingxin Shang;  Lili Lyu;  Sijia Li;  Qian Yang;  Dongmei Lyu;  Dehua Mao;  Baohua Zhang;  Shuai Cheng;  Yunfeng Lyu
收藏  |  浏览/下载:14/0  |  提交时间:2022/02/16
Mapping soil microbial residence time at the global scale 期刊论文
Global Change Biology, 2021
作者:  Liyuan He;  Xiaofeng Xu
收藏  |  浏览/下载:14/0  |  提交时间:2021/09/14
Ambient climate determines the directional trend of community stability under warming and grazing 期刊论文
Global Change Biology, 2021
作者:  Peipei Liu;  Wangwang Lv;  Jianping Sun;  Caiyun Luo;  Zhenhua Zhang;  Xiaoxue Zhu;  Xingwu Lin;  Jichuang Duan;  Guangping Xu;  Xiaofeng Chang;  Yigang Hu;  Qiaoyan Lin;  Burenbayin Xu;  Xiaowei Guo;  Lili Jiang;  Yanfen Wang;  Shilong Piao;  Jinzhi Wang;  Haishan Niu;  Liyong Shen;  Yang Zhou;  Bowen Li;  Lirong Zhang;  Huan Hong;  Qi Wang;  A. Wang;  Suren Zhang;  Lu Xia;  Tsechoe Dorji;  Yingnian Li;  Guangming Cao;  Josep Peñ;  uelas;  Xinquan Zhao;  Shiping Wang
收藏  |  浏览/下载:22/0  |  提交时间:2021/08/10
Microbial seasonality promotes soil respiratory carbon emission in natural ecosystems: A modeling study 期刊论文
Global Change Biology, 2021
作者:  Liyuan He;  Chun‐;  Ta Lai;  Melanie A. Mayes;  Shohei Murayama;  Xiaofeng Xu
收藏  |  浏览/下载:9/0  |  提交时间:2021/05/21
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:17/0  |  提交时间:2020/07/03
Alcohol-derived DNA crosslinks are repaired by two distinct mechanisms 期刊论文
NATURE, 2020, 579 (7800) : 603-+
作者:  Xu, Wanghuai;  Zheng, Huanxi;  Liu, Yuan;  Zhou, Xiaofeng;  Zhang, Chao;  Song, Yuxin;  Deng, Xu;  Leung, Michael;  Yang, Zhengbao;  Xu, Ronald X.;  Wang, Zhong Lin;  Zeng, Xiao Cheng;  Wang, Zuankai
收藏  |  浏览/下载:20/0  |  提交时间:2020/07/03

Acetaldehyde is a highly reactive, DNA-damaging metabolite that is produced upon alcohol consumption(1). Impaired detoxification of acetaldehyde is common in the Asian population, and is associated with alcohol-related cancers(1,2). Cells are protected against acetaldehyde-induced damage by DNA crosslink repair, which when impaired causes Fanconi anaemia (FA), a disease resulting in failure to produce blood cells and a predisposition to cancer(3,4). The combined inactivation of acetaldehyde detoxification and the FA pathway induces mutation, accelerates malignancies and causes the rapid attrition of blood stem cells(5-7). However, the nature of the DNA damage induced by acetaldehyde and how this is repaired remains a key question. Here we generate acetaldehyde-induced DNA interstrand crosslinks and determine their repair mechanism in Xenopus egg extracts. We find that two replication-coupled pathways repair these lesions. The first is the FA pathway, which operates using excision-analogous to the mechanism used to repair the interstrand crosslinks caused by the chemotherapeutic agent cisplatin. However, the repair of acetaldehyde-induced crosslinks results in increased mutation frequency and an altered mutational spectrum compared with the repair of cisplatin-induced crosslinks. The second repair mechanism requires replication fork convergence, but does not involve DNA incisions-instead the acetaldehyde crosslink itself is broken. The Y-family DNA polymerase REV1 completes repair of the crosslink, culminating in a distinct mutational spectrum. These results define the repair pathways of DNA interstrand crosslinks caused by an endogenous and alcohol-derived metabolite, and identify an excision-independent mechanism.


DNA interstrand crosslinks induced by acetaldehyde are repaired by both the Fanconi anaemia pathway and by a second, excision-independent repair mechanism.


  
Microbes drive global soil nitrogen mineralization and availability 期刊论文
GLOBAL CHANGE BIOLOGY, 2019, 25 (3) : 1078-1088
作者:  Li, Zhaolei;  Tian, Dashuan;  Wang, Bingxue;  Wang, Jinsong;  Wang, Song;  Chen, Han Y. H.;  Xu, Xiaofeng;  Wang, Changhui;  He, Nianpeng;  Niu, Shuli
收藏  |  浏览/下载:16/0  |  提交时间:2019/04/09
croplands  dominant factor  microbial biomass  natural ecosystems  nitrogen availability  nitrogen mineralization  soil properties  
Ammonia emission control in China would mitigate haze pollution and nitrogen deposition, but worsen acid rain 期刊论文
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2019, 116 (16) : 7760-7765
作者:  Liu, Mingxu;  Huang, Xin;  Song, Yu;  Tang, Jie;  Cao, Junji;  Zhang, Xiaoye;  Zhang, Qiang;  Wang, Shuxiao;  Xu, Tingting;  Kang, Ling;  Cai, Xuhui;  Zhang, Hongsheng;  Yang, Fumo;  Wang, Huanbo;  Yu, Jian Zhen;  Lau, Alexis K. H.;  He, Lingyan;  Huang, Xiaofeng;  Duan, Lei;  Ding, Aijun;  Xue, Likun;  Gao, Jian;  Liu, Bin;  Zhu, Tong
收藏  |  浏览/下载:12/0  |  提交时间:2019/11/27
ammonia emission  China  PM2.5  acid rain  nitrogen deposition