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

Retroviral intasome architecture shapes the dynamics of target DNA search and integration

逆转录病毒整合体的结构决定了靶DNA搜索和整合的动态过程。

Baltierra-Jasso, Laura E; Larue, Ross C; Jones, Nathan D; Tan, Yow Yong; Messer, Ryan; Ballandras-Colas, Allison; Engelman, Alan N; Fishel, Richard; Yoder, Kristine E

A high-throughput single-molecule platform to study DNA supercoiling effect on protein-DNA interactions.

用于研究 DNA 超螺旋效应对蛋白质-DNA 相互作用的高通量单分子平台

Lee Huijin, Rashid Fahad, Hwang Jihee, London James A, Fishel Richard, Berger James M, Myong Sua, Ha Taekjip

Riluzole Enhancing Anti-PD-1 Efficacy by Activating cGAS/STING Signaling in Colorectal Cancer.

利鲁唑通过激活结直肠癌中的 cGAS/STING 信号通路增强抗 PD-1 疗效

Liang Beiyuan, Khan Misbah, Storts Hayden, Zhang Evan H, Zheng Xinru, Xing Xuanxuan, Claybon Hazel, Wilson Jenna, Li Chunjie, Jin Ning, Fishel Richard, Miles Wayne O, Wang Jing J

An Accessible Python Framework for Real-Time Magnetic Tweezers Microscope Control and Image Processing

一个易于使用的Python框架,用于实时磁镊显微镜控制和图像处理

London, James A; Singh, Abhishek K; Svendsen, Teague C; Tirtom, Naciye Esma; Root, Zachary A; Fishel, Richard

DNA strand breaks and gaps target retroviral intasome binding and integration

DNA链断裂和缺口会靶向逆转录病毒整合体的结合和整合。

Senavirathne, Gayan; London, James; Gardner, Anne; Fishel, Richard; Yoder, Kristine E

Linker domain function predicts pathogenic MLH1 missense variants

连接区功能预测致病性MLH1错义变异

London, James; Martín-López, Juana; Yang, Inho; Liu, Jiaquan; Lee, Jong-Bong; Fishel, Richard

Mismatch repair: Choreographing accurate strand excision

错配修复:精心策划的精确链切除

Fishel, Richard

Strategies for Targeting Retroviral Integration for Safer Gene Therapy: Advances and Challenges

靶向逆转录病毒整合以实现更安全的基因治疗的策略:进展与挑战

Yoder, Kristine E; Rabe, Anthony J; Fishel, Richard; Larue, Ross C

Evolutionary advantage of a dissociative search mechanism in DNA mismatch repair

DNA错配修复中解离搜索机制的进化优势

Crocker, Kyle; London, James; Medina, Andrés; Fishel, Richard; Bundschuh, Ralf

Nucleosome DNA unwrapping does not affect prototype foamy virus integration efficiency or site selection

核小体DNA解旋不影响原型泡沫病毒的整合效率或位点选择。

Mackler, Randi M; Jones, Nathan D; Gardner, Anne M; Lopez, Miguel A Jr; Howard, Cecil J; Fishel, Richard; Yoder, Kristine E