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

PRMT5 activity sustains histone production to maintain genome integrity.

PRMT5活性维持组蛋白的合成,从而保持基因组的完整性

Roth Jacob S, DeAngelo Joseph D, Young Dejauwne L, Maron Maxim I, Saha Ankita, Pinto Hugo, Gupta Varun, Jacobs Noah, Hegde Subray, Aguilan Jennifer T, Basken Joel, Azofeifa Joey, Query Charles C, Sidoli Simone, Skoultchi Arthur I, Shechter David

Pseudouridines in U2 snRNA stimulate the ATPase activity of Prp5 during spliceosome assembly

U2 snRNA中的假尿苷在剪接体组装过程中刺激Prp5的ATPase活性

Wu, Guowei; Adachi, Hironori; Ge, Junhui; Stephenson, David; Query, Charles C; Yu, Yi-Tao

SF3B1/Hsh155 HEAT motif mutations affect interaction with the spliceosomal ATPase Prp5, resulting in altered branch site selectivity in pre-mRNA splicing

SF3B1/Hsh155 HEAT 基序突变影响与剪接体 ATPase Prp5 的相互作用,导致前体 mRNA 剪接中分支位点选择性改变。

Tang, Qing; Rodriguez-Santiago, Susana; Wang, Jing; Pu, Jia; Yuste, Andrea; Gupta, Varun; Moldón, Alberto; Xu, Yong-Zhen; Query, Charles C

A U1-U2 snRNP interaction network during intron definition

内含子定义过程中的 U1-U2 snRNP 相互作用网络

Shao, Wei; Kim, Hyun-Soo; Cao, Yang; Xu, Yong-Zhen; Query, Charles C

Prp5 bridges U1 and U2 snRNPs and enables stable U2 snRNP association with intron RNA

Prp5连接U1和U2 snRNP,并使U2 snRNP与内含子RNA稳定结合。

Xu, Yong-Zhen; Newnham, Catherine M; Kameoka, Sei; Huang, Tao; Konarska, Maria M; Query, Charles C