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

Cran1, member of a new class of OLD family ATPases, functions in cell cycle progression in an archaeon.

Cran1 是 OLD 家族 ATPase 的一个新成员,在古细菌的细胞周期进程中发挥作用。

Yang Yunfeng, Liang Shikuan, Liu Junfeng, Fu Xiaofei, Wu Pengju, Li Haodun, Ni Jinfeng, She Qunxin, Krupovic Mart, Shen Yulong

Ba Cas12a3 represents a new subtype of type V CRISPR effector with collateral activity toward tRNA

Ba Cas12a3 代表了一种新型的 V 型 CRISPR 效应蛋白亚型,对 tRNA 具有附带活性。

Ji, Shiqi; Li, Xin; Wu, Chenwei; Guo, Jinshan; Zheng, Ruyi; Kong, Jingwen; Du, Lei; She, Qunxin

Modulation of Hachiman defence by a type II toxin-antitoxin system via balancing trade-off between the fitness cost and antiphage activity

通过平衡适应性代价和抗噬菌体活性之间的权衡,II型毒素-抗毒素系统调节八幡防御

Tian, Xuhui; Zheng, Ruyi; Li, Xin; Jiang, Suping; Wang, Fang; Shen, Yulong; She, Qunxin

Universal Amplification-Free RNA Detection by Integrating CRISPR-Cas10 with Aptameric Graphene Field-Effect Transistor

通过将 CRISPR-Cas10 与适体石墨烯场效应晶体管集成来实现通用的无需扩增的 RNA 检测

Sun, Mingyuan; Yu, Zhenxiao; Wang, Shuai; Qiu, Jiaoyan; Huang, Yuzhen; Chen, Xiaoshuang; Zhang, Yunhong; Wang, Chao; Zhang, Xue; Liang, Yanbo; Liu, Hong; She, Qunxin; Zhang, Yu; Han, Lin

Control of the archaeal DNA damage-responsive pathway by phosphorylation of Orc1-2, the global regulator in Saccharolobus islandicus

通过Orc1-2磷酸化调控古菌DNA损伤反应通路,Orc1-2是冰岛糖杆菌(Saccharolobus islandicus)中的全局调控因子。

Liu, Xiaotong; Feng, Xu; Yuan, Guanhua; Wang, Fang; Huang, Qihong; Xu, Jianan; Shen, Yulong; She, Qunxin

Substrate-induced remodeling of protein disordered loops activates Csm DNases

底物诱导的蛋白质无序环重塑激活Csm DNases

Yu, Zhenxiao; Wang, Fang; Zhang, Zixuan; Zhang, Yan; Xu, Jianan; Li, Xin; Liang, Mingqi; Guo, Jinshan; Ji, Shiqi; She, Qunxin

An Lrs14 family protein functions as a nucleoid-associated protein regulating cell cycle progression in Sulfolobales

Lrs14家族蛋白作为核样体相关蛋白,在硫化叶菌目中调控细胞周期进程。

Gan, Qi; Li, Haodun; Huang, Qihong; Yang, Yunfeng; Sun, Fei; Feng, Xu; Ni, Jinfeng; Zhang, Zhenfeng; She, Qunxin; Shen, Yulong

Flexible TAM requirement of TnpB enables efficient single-nucleotide editing with expanded targeting scope.

TnpB 灵活的 TAM 要求使其能够进行高效的单核苷酸编辑,并扩大靶向范围

Feng Xu, Xu Ruyi, Liao Jianglan, Zhao Jingyu, Zhang Baochang, Xu Xiaoxiao, Zhao Pengpeng, Wang Xiaoning, Yao Jianyun, Wang Pengxia, Wang Xiaoxue, Han Wenyuan, She Qunxin

Rational design of unrestricted pRN1 derivatives and their application in the construction of a dual plasmid vector system for Saccharolobus islandicus

合理设计无限制的pRN1衍生物及其在构建冰岛糖杆菌双质粒载体系统中的应用

Zhao, Pengpeng; Bi, Xiaonan; Wang, Xiaoning; Feng, Xu; Shen, Yulong; Yuan, Guanhua; She, Qunxin

Harnessing the LdCsm RNA Detection Platform for Efficient microRNA Detection

利用LdCsm RNA检测平台实现高效的microRNA检测

Yu, Zhenxiao; Xu, Jianan; She, Qunxin