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

Both Domains of APOBEC3F Recognize AA RNA Motifs to Support HIV-1 Virion Encapsidation and Antiviral Function

APOBEC3F的两个结构域均能识别AA RNA基序,从而支持HIV-1病毒颗粒的包装和抗病毒功能。

Pacheco, Josue; Yousefi, Maria; Yang, Hanjing; Li, Shuxing; Chelico, Linda; Chen, Xiaojiang S

Aphid adaptation to plant secondary metabolites: adaptive mechanism of resistance evolution and future prospects

蚜虫对植物次生代谢物的适应:抗性进化的适应机制及未来展望

Farhan, Muhammad; Pan, Jilong; Zhao, Jun; Yang, Hanjing; Zhang, Shuai

APOBEC3B Promotes SARS-CoV-2 Through Activation of PKR/eIF2⍺ and AMPD2 Dysregulation.

APOBEC3B 通过激活 PKR/eIF2â 和 AMPD2 失调来促进 SARS-CoV-2。

Fixman Benjamin, Manjunath Lavanya, Sell Philip, Wang Shanshan, Margaryan Tamara, Qiu Connor, Yang Hanjing, Buisson Rémi, Chen Xiaojiang S

Structural basis for polyuridine tract recognition by SARS-CoV-2 Nsp15

SARS-CoV-2 Nsp15识别多聚尿苷酸序列的结构基础

Ito, Fumiaki; Yang, Hanjing; Zhou, Z Hong; Chen, Xiaojiang S

Aphid-Resistant Plant Secondary Metabolites: Types, Insecticidal Mechanisms, and Prospects for Utilization

抗蚜虫植物次生代谢产物:类型、杀虫机制及应用前景

Farhan, Muhammad; Pan, Jilong; Hussain, Hammad; Zhao, Jun; Yang, Hanjing; Ahmad, Ishtiaq; Zhang, Shuai

Crystal structures of APOBEC3G N-domain alone and its complex with DNA.

APOBEC3G N 结构域及其与 DNA 复合物的晶体结构

Xiao Xiao, Li Shu-Xing, Yang Hanjing, Chen Xiaojiang S

DNA cytosine and methylcytosine deamination by APOBEC3B: enhancing methylcytosine deamination by engineering APOBEC3B

APOBEC3B介导的DNA胞嘧啶和甲基胞嘧啶脱氨:通过改造APOBEC3B增强甲基胞嘧啶脱氨作用

Fu, Yang; Ito, Fumiaki; Zhang, Gewen; Fernandez, Braulio; Yang, Hanjing; Chen, Xiaojiang S

Mutagenesis and Repair in Bacillus anthracis: the Effect of Mutators

炭疽杆菌的诱变与修复:诱变剂的作用

Candy, J M; Duggleby, R G; Ziebell, Krystle; Aguila, Sharon; Shi, Vivian Yan; Chan, Andrea; Yang, Hanjing; Miller, Jeffrey H

Mutagenesis and repair in Bacillus anthracis: the effect of mutators

炭疽杆菌的诱变与修复:诱变剂的作用

Zeibell, Krystle; Aguila, Sharon; Yan Shi, Vivian; Chan, Andrea; Yang, Hanjing; Miller, Jeffrey H

A novel uracil-DNA glycosylase with broad substrate specificity and an unusual active site

一种新型尿嘧啶-DNA糖苷酶,具有广泛的底物特异性和不寻常的活性位点

Sartori, Alessandro A; Fitz-Gibbon, Sorel; Yang, Hanjing; Miller, Jeffrey H; Jiricny, Josef