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

Heparan sulfate as an attachment factor for ASFV is restricted by host HB-EGF

宿主HB-EGF限制了硫酸乙酰肝素作为非洲猪瘟病毒附着因子的作用。

Xue, Wenchao; Yang, Fayu; Zhang, Zhonghui; Zhang, Xiangle; Yang, Yuxi; Li, Yuxuan; Feng, Zhengshan; Li, Yong; Lan, Xi; Zheng, Haixue; Zhu, Zixiang; Zhang, Shilei

Quantitative proteomic analysis identifies the unfolded protein response as a host pathway co-opted by ASFV to promote replication.

定量蛋白质组学分析表明,未折叠蛋白反应是 ASFV 为促进复制而利用的宿主途径。

Zhang Danyang, Liu Baohong, Liu Huanan, Mao Ruoqing, Cao Weijun, Zhang Xiangle, Yang Fayu, Wang Yichao, Shen Chaochao, Zhang Shilei, Zhu Zixiang, Zheng Haixue

Host-pathogen interactions in African swine fever: From viral entry to systemic disease progression

非洲猪瘟中的宿主-病原体相互作用:从病毒入侵到全身性疾病进展

Zhang, Danyang; Zhang, Shilei; Yang, Fayu; Zhu, Zixiang; Zheng, Haixue

Structural basis of RNA polymerase complexes in African swine fever virus

非洲猪瘟病毒RNA聚合酶复合物的结构基础

Zhu, Guoliang; Xi, Fei; Zeng, Wuxia; Zhao, Yifei; Cao, Weijun; Liu, Chen; Yang, Fan; Ru, Yi; Xiao, Shuqi; Zhang, Shilei; Liu, Huanan; Tian, Hong; Yang, Fayu; Lu, Biao; Sun, Shukai; Song, Haiyang; Sun, Bozhang; Zhao, Xiaoyi; Tang, Lijie; Li, Kangli; He, Jijun; Guo, Jianhong; Zhu, Yun; Zhu, Zixiang; Sun, Fei; Zheng, Haixue

Nanchangmycin suppresses influenza A virus infection by blocking endosomal acidification

南昌霉素通过阻断内体酸化抑制甲型流感病毒感染。

Zhang, Hao; Liu, Changhai; Cai, Shuo; Wu, Yuting; Shang, Lu; Yang, Fayu; Liu, Jing; Wei, Nan; Liu, Yingchun; Wang, Mi; Gao, Fei; Liu, Qinfang; Chen, Hongjun; Tong, Guangzhi; Chen, Yin; Gu, Feng

Structural diversity and biological role of the 5' untranslated regions of picornavirus

小核糖核酸病毒5'非翻译区的结构多样性和生物学作用

Peng, Tingyu; Yang, Fayu; Yang, Fan; Cao, Weijun; Zheng, Haixue; Zhu, Zixiang

Optimizing a CRISPR-Cpf1-based genome engineering system for Corynebacterium glutamicum

优化基于 CRISPR-Cpf1 的谷氨酸棒状杆菌基因组编辑系统

Zhang, Jiao; Yang, Fayu; Yang, Yunpeng; Jiang, Yu; Huo, Yi-Xin

Efficient cleavage resolves PAM preferences of CRISPR-Cas in human cells.

高效切割可解决 CRISPR-Cas 在人类细胞中的 PAM 偏好性

Tang Lianchao, Yang Fayu, He Xiaoxue, Xie Haihua, Liu Xiaoyu, Fu Junhao, Xi Haitao, Lu Xiaosheng, Liu Changbao, Song Zongming, Qu Jia, Zhao Junzhao, Gu Feng

Boosting activity of high-fidelity CRISPR/Cas9 variants using a tRNA(Gln)-processing system in human cells

利用tRNA(Gln)加工系统增强人类细胞中高保真CRISPR/Cas9变体的活性

He, Xiubin; Wang, Yufei; Yang, Fayu; Wang, Bang; Xie, Haihua; Gu, Lingkai; Zhao, Tianyuan; Liu, Xiexie; Zhang, Dingbo; Ren, Qianwen; Liu, Xiaoyu; Liu, Yong; Gao, Caixia; Gu, Feng

Engineering the Direct Repeat Sequence of crRNA for Optimization of FnCpf1-Mediated Genome Editing in Human Cells

通过改造crRNA的直接重复序列来优化FnCpf1介导的人类细胞基因组编辑

Lin, Li; He, Xiubin; Zhao, Tianyuan; Gu, Lingkai; Liu, Yeqing; Liu, Xiaoyu; Liu, Hongyan; Yang, Fayu; Tu, Mengjun; Tang, Lianchao; Ge, Xianglian; Liu, Changbao; Zhao, Junzhao; Song, Zongming; Qu, Jia; Gu, Feng