日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Secondary structure transitions and dual PIP2 binding define cardiac KCNQ1-KCNE1 channel gating

二级结构转变和双重 PIP2 结合决定了心脏 KCNQ1-KCNE1 通道的门控机制

Zhong, Ling; Lin, Xiaoqing; Cheng, Xinyu; Wan, Shuangyan; Hua, Yaoguang; Nan, Weiwei; Hu, Bin; Peng, Xiangjun; Zhou, Zihan; Zhang, Qiansen; Yang, Huaiyu; Noé, Frank; Yan, Zhenzhen; Jiang, Dexiang; Zhang, Hangyu; Liu, Fengjiao; Xiao, Chenxin; Zhou, Zhuo; Mou, Yimin; Yu, Haijie; Ma, Lijuan; Huang, Chen; Wong, Vincent Kam Wai; Chung, Sookja Kim; Shen, Bing; Jiang, Zhi-Hong; Neher, Erwin; Zhu, Wandi; Zhang, Jin; Hou, Panpan

Coronaviral nsp6 hijacks ERAD machinery to facilitate lipolysis and supply membrane components for DMV growth.

冠状病毒 nsp6 劫持 ERAD 机制以促进脂肪分解并为 DMV 生长提供膜成分。

Liu Shu-Rui, Zhou Yuzheng, Li Jinwei, Wang Zhaohuan, Ye Yu, Miao Jiafan, Shi Keda, Zheng Birong, Ding Binbin, Pan Jian, Li Chun-Mei, Li Yiping, Hou Panpan, Guo Deyin

RNF167 mediates atypical ubiquitylation and degradation of RLRs via two distinct proteolytic pathways.

RNF167 通过两种不同的蛋白水解途径介导 RLR 的非典型泛素化和降解

He Miao, Yang Zixiao, Xie Luyang, Chen Junhai, Liu Shurui, Lu Liaoxun, Li Zibo, Zheng Birong, Ye Yu, Lin Yuxin, Bu Lang, Xiao Jingshu, Zhong Yongheng, Jia Penghui, Li Qiang, Liang Yinming, Guo Deyin, Li Chun-Mei, Hou Panpan

SARS-CoV-2 nsp14 induces the m(7)G methylation and the sequestration of host RNAs in stress granules.

SARS-CoV-2 nsp14 诱导 m(7)G 甲基化,并将宿主 RNA 隔离在应激颗粒中。

Li Xiaoxiao, Huang Weiyi, Zhang Shuhang, Wang Wenhao, Lin Jiejing, Wang Zhuohua, Zeng Qiang, Zhang Fushi, Cao Manqi, Chen Yinan, Peng Ziliang, Sun Qingrong, Liang Zhijuan, Zhuang Jiaxin, Yang Haibin, Hou Panpan, Zhao Bo, Chen Yaoqing, Cao Liu, Yang Zhonghan, Guo Deyin, Pan Ji-An, Peng Xiaoxue

CCDC50 mediates the clearance of protein aggregates to prevent cellular proteotoxicity.

CCDC50介导蛋白质聚集体的清除,以防止细胞蛋白毒性

Ye Yu, Jia Penghui, Miao Jiafan, Wang Yicheng, Li Zibo, Lin Yuxin, He Miao, Liu Shurui, Zheng Bi-Rong, Wu Junyu, Pan Ji'an, Li Chun-Mei, Hou Panpan, Guo Deyin

Ligand activation mechanisms of human KCNQ2 channel

人KCNQ2通道的配体激活机制

Ma, Demin; Zheng, Yueming; Li, Xiaoxiao; Zhou, Xiaoyu; Yang, Zhenni; Zhang, Yan; Wang, Long; Zhang, Wenbo; Fang, Jiajia; Zhao, Guohua; Hou, Panpan; Nan, Fajun; Yang, Wei; Su, Nannan; Gao, Zhaobing; Guo, Jiangtao

Structural mechanisms for the activation of human cardiac KCNQ1 channel by electro-mechanical coupling enhancers

电机械耦合增强剂激活人类心脏KCNQ1通道的结构机制

Ma, Demin; Zhong, Ling; Yan, Zhenzhen; Yao, Jing; Zhang, Yan; Ye, Fan; Huang, Yuan; Lai, Dongwu; Yang, Wei; Hou, Panpan; Guo, Jiangtao

A novel phosphorylation site in SARS-CoV-2 nucleocapsid regulates its RNA-binding capacity and phase separation in host cells

SARS-CoV-2核衣壳中一种新的磷酸化位点调控其RNA结合能力和在宿主细胞中的相分离。

Wu, Junyu; Zhong, Yongheng; Liu, Xue; Lu, Xiaoyu; Zeng, Weijie; Wu, Chunyan; Xing, Fan; Cao, Liu; Zheng, Fuxiang; Hou, Panpan; Peng, Hong; Li, Chunmei; Guo, Deyin

Author Correction: A PIP(2) substitute mediates voltage sensor-pore coupling in KCNQ activation

作者更正:PIP(2)取代物介导KCNQ激活过程中电压传感器与孔道的耦合

Liu, Yongfeng; Xu, Xianjin; Gao, Junyuan; Naffaa, Moawiah M; Liang, Hongwu; Shi, Jingyi; Wang, Hong Zhan; Yang, Nien-Du; Hou, Panpan; Zhao, Wenshan; White, Kelli McFarland; Kong, Wenjuan; Dou, Alex; Cui, Amy; Zhang, Guohui; Cohen, Ira S; Zou, Xiaoqin; Cui, Jianmin

Pirfenidone Attenuates Renal Tubulointerstitial Fibrosis through Inhibiting miR-21

吡非尼酮通过抑制 miR-21 减轻肾小管间质纤维化

Liangliang Bi, Yanjie Huang, Jing Li, Xiaoqing Yang, Gailing Hou, Panpan Zhai, Qiushuang Zhang, Abubakari Adam Alhaji, Yueli Yang, Bo Liu