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

5-ethynyluridine perturbs nuclear RNA metabolism to promote the nuclear accumulation of TDP-43 and other RNA binding proteins

5-乙炔基尿苷扰乱核内RNA代谢,促进TDP-43和其他RNA结合蛋白在核内积累。

Hayes, Lindsey R; Zaepfel, Benjamin; Duan, Lauren; Starner, Anne C; Bartels, Mason D; Rothacher, Rebekah L; Martin, Sophie; French, Rachel; Zhang, Zhe; Sinha, Irika R; Ling, Jonathan P; Sun, Shuying; Ayala, Yuna M; Coller, Jeff; Van Nostrand, Eric L; Florea, Liliana; Kalab, Petr

QKI ensures splicing fidelity during cardiogenesis by engaging the U6 tri-snRNP to activate splicing at weak 5' splice sites.

QKI 通过与 U6 tri-snRNP 结合,激活弱 5' 剪接位点的剪接,从而确保心脏发育过程中的剪接保真度

Akinyi Maureen V, Yao Wenjie, Zeman Jakub, Hipp Clara, Bartsch Deniz, Heaven Laurence, Le Roux Charlotte A, Starner Anne C, Yuan Fei, Bartels Mason D, Zhao Fangyu, Ha Hang Le, Sharma Riddhi, Choudhary Bhumika, Biayna Josep, Brandes Ralf P, Dumbović Gabrijela, Ray Arjun, Wittig Ilka, Muench Christian, Sattler Michael, Van Nostrand Eric L, Kurian Leo

Short 5' UTRs serve as a marker for viral mRNA translation inhibition by the IFIT2-IFIT3 antiviral complex.

短的 5' UTR 可作为 IFIT2-IFIT3 抗病毒复合物抑制病毒 mRNA 翻译的标志

Glasner Dustin R, Todd Candace, Cook Brian, D'Urso Agustina, Khosla Shivani, Estrada Elena, Wagner Jaxon D, Bartels Mason D, Ford Pierce, Prych Jordan, Hatch Katie, Yee Brian A, Ego Kaori M, Liang Qishan, Holland Sarah R, Case James Brett, Corbett Kevin D, Diamond Michael S, Yeo Gene W, Herzik Mark A Jr, Van Nostrand Eric L, Daugherty Matthew D

hnRNPM protects against the dsRNA-mediated interferon response by repressing LINE-associated cryptic splicing.

hnRNPM 通过抑制 LINE 相关隐蔽剪接来抵抗 dsRNA 介导的干扰素反应

Zheng Rong, Dunlap Mikayla, Bobkov Georg O M, Gonzalez-Figueroa Carlos, Patel Khushali J, Lyu Jingyi, Harvey Samuel E, Chan Tracey W, Quinones-Valdez Giovanni, Choudhury Mudra, Le Roux Charlotte A, Bartels Mason D, Vuong Amy, Flynn Ryan A, Chang Howard Y, Van Nostrand Eric L, Xiao Xinshu, Cheng Chonghui

Combined Inhibition of Rad51 and Wee1 Enhances Cell Killing in HNSCC Through Induction of Apoptosis Associated With Excessive DNA Damage and Replication Stress

Rad51 和 Wee1 的联合抑制可通过诱导与过度 DNA 损伤和复制压力相关的细胞凋亡来增强头颈部鳞状细胞癌 (HNSCC) 的细胞杀伤作用。

Lindemann, Antje; Patel, Ameeta A; Tang, Lin; Tanaka, Noriaki; Gleber-Netto, Frederico O; Bartels, Mason D; Wang, Li; McGrail, Daniel J; Lin, Shiaw-Yih; Frank, Steven J; Frederick, Mitchell J; Myers, Jeffrey N; Osman, Abdullah A