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

Orthosteric and allosteric effects of anti-CRISPR II-C1 inhibition on Geo Cas9 from integrated structural biophysics

整合结构生物物理学研究抗CRISPR II-C1抑制剂对Geo Cas9的正构和变构效应

Knight, Alexa L; Belato, Helen B; Dresser, Charlotte S; Pindi, Chinmai; Mercado, Briana J; Lasekan, Praise; Luo, Jinping; Arantes, Pablo R; Jogl, Gerwald; Palermo, Giulia; Lisi, George P

Structural and dynamic impacts of single-atom disruptions to guide RNA interactions within the recognition lobe of Geobacillus stearothermophilus Cas9

单原子破坏对嗜热芽孢杆菌Cas9识别叶内RNA相互作用的结构和动态影响

Belato, Helen B; Knight, Alexa L; D'Ordine, Alexandra M; Pindi, Chinmai; Fan, Zhiqiang; Luo, Jinping; Palermo, Giulia; Jogl, Gerwald; Lisi, George P

Structural and Dynamic Impacts of Single-atom Disruptions to Guide RNA Interactions within the Recognition Lobe of Geobacillus stearothermophilus Cas9

单原子破坏对嗜热芽孢杆菌Cas9识别叶内RNA相互作用的结构和动态影响

Belato, Helen B; Knight, Alexa L; D'Ordine, Alexandra M; Pindi, Chinmai; Fan, Zhiqiang; Luo, Jinping; Palermo, Giulia; Jogl, Gerwald; Lisi, George P

Graph Attention Neural Networks Reveal TnsC Filament Assembly in a CRISPR-Associated Transposon

图注意力神经网络揭示了 CRISPR 相关转座子中 TnsC 丝状体的组装

Pindi, Chinmai; Ahsan, Mohd; Sinha, Souvik; Palermo, Giulia

Design Rules for Expanding PAM Compatibility in CRISPR-Cas9 from the VQR, VRER and EQR variants

从 VQR、VRER 和 EQR 变体扩展 CRISPR-Cas9 中 PAM 兼容性的设计规则

Vieyra, Francisco; Pindi, Chinmai; Lisi, George P; Morzan, Uriel N; Palermo, Giulia

Fine-tuning pH sensor H98 by remote essential residues in the hydrogen-bond network of mTASK-3.

通过 mTASK-3 氢键网络中的远程必需残基对 pH 传感器 H98 进行微调

Fan Xueming, Ye Yifei, Saha Aakash, Peng Li, Pindi Chinmai, Wang Qi, Yang Linghui, Liu Jin, Tang Xiangdong, Palermo Giulia, Liao Jiayu, Xu Tingting, Lu Yongzhi, Du Guizhi

Machines on Genes through the Computational Microscope

通过计算显微镜观察基因上的机器

Sinha, Souvik; Pindi, Chinmai; Ahsan, Mohd; Arantes, Pablo R; Palermo, Giulia

Disruption of electrostatic contacts in the HNH nuclease from a thermophilic Cas9 rewires allosteric motions and enhances high-temperature DNA cleavage

嗜热Cas9破坏HNH核酸酶中的静电接触,重塑变构运动,增强高温下DNA的切割能力。

Belato, Helen B; Norbrun, Carmelissa; Luo, Jinping; Pindi, Chinmai; Sinha, Souvik; D'Ordine, Alexandra M; Jogl, Gerwald; Palermo, Giulia; Lisi, George P

Identifying crucial E-protein residues responsible for unusual stability of Zika virus envelope

鉴定导致寨卡病毒包膜异常稳定性的关键E蛋白残基

Pindi, Chinmai; Chirasani, Venkat R; Senapati, Sanjib