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

The All of Us Research Program is an opportunity to enhance the diversity of US biomedical research

“我们所有人”研究计划为增强美国生物医学研究的多样性提供了契机

Bianchi, Diana W; Brennan, Patricia Flatley; Chiang, Michael F; Criswell, Lindsey A; D'Souza, Rena N; Gibbons, Gary H; Gilman, James K; Gordon, Joshua A; Green, Eric D; Gregurick, Susan; Hodes, Richard J; Kilmarx, Peter H; Koob, George F; Koroshetz, Walter J; Langevin, Helene M; Lorsch, Jon R; Marrazzo, Jeanne M; Pérez-Stable, Eliseo J; Rathmell, W Kimryn; Rodgers, Griffin P; Rutter, Joni L; Simoni, Jane M; Tromberg, Bruce J; Tucci, Debara L; Volkow, Nora D; Woychik, Rick; Zenk, Shannon N; Kozlowski, Elyse; Peterson, Rachele S; Ginsburg, Geoffrey S; Denny, Joshua C

Applied research won't flourish without basic science

没有基础科学,应用研究就无法蓬勃发展。

Lorsch, Jon R; Tabak, Lawrence A; Bertagnolli, Monica M

Developing a culture of safety in biomedical research training

在生物医学研究培训中培养安全文化

Bond, Michelle R; Gammie, Alison E; Lorsch, Jon R

Translational initiation factor eIF5 replaces eIF1 on the 40S ribosomal subunit to promote start-codon recognition

翻译起始因子eIF5取代40S核糖体亚基上的eIF1,以促进起始密码子的识别。

Llácer, Jose Luis; Hussain, Tanweer; Saini, Adesh K; Nanda, Jagpreet Singh; Kaur, Sukhvir; Gordiyenko, Yuliya; Kumar, Rakesh; Hinnebusch, Alan G; Lorsch, Jon R; Ramakrishnan, V

Yeast Ded1 promotes 48S translation pre-initiation complex assembly in an mRNA-specific and eIF4F-dependent manner

酵母Ded1以mRNA特异性和eIF4F依赖的方式促进48S翻译前起始复合物的组装。

Gupta, Neha; Lorsch, Jon R; Hinnebusch, Alan G

Eukaryotic translation initiation factor 3 plays distinct roles at the mRNA entry and exit channels of the ribosomal preinitiation complex

真核翻译起始因子3在核糖体前起始复合物的mRNA进入和离开通道中发挥着不同的作用。

Aitken, Colin Echeverría; Beznosková, Petra; Vlčkova, Vladislava; Chiu, Wen-Ling; Zhou, Fujun; Valášek, Leoš Shivaya; Hinnebusch, Alan G; Lorsch, Jon R

Maximizing the return on taxpayers' investments in fundamental biomedical research

最大限度地提高纳税人对基础生物医学研究的投资回报

Lorsch, Jon R

Structural changes enable start codon recognition by the eukaryotic translation initiation complex

结构变化使得真核翻译起始复合物能够识别起始密码子。

Hussain, Tanweer; Llácer, Jose L; Fernández, Israel S; Munoz, Antonio; Martin-Marcos, Pilar; Savva, Christos G; Lorsch, Jon R; Hinnebusch, Alan G; Ramakrishnan, V

Conserved residues in yeast initiator tRNA calibrate initiation accuracy by regulating preinitiation complex stability at the start codon.

酵母起始 tRNA 中的保守残基通过调节起始密码子处的起始前复合物稳定性来校准起始准确性

Dong Jinsheng, Munoz Antonio, Kolitz Sarah E, Saini Adesh K, Chiu Wen-ling, Rahman Hafsa, Lorsch Jon R, Hinnebusch Alan G

Yeast eIF4B binds to the head of the 40S ribosomal subunit and promotes mRNA recruitment through its N-terminal and internal repeat domains

酵母eIF4B与40S核糖体亚基的头部结合,并通过其N端和内部重复结构域促进mRNA的募集。

Walker, Sarah E; Zhou, Fujun; Mitchell, Sarah F; Larson, Victoria S; Valasek, Leos; Hinnebusch, Alan G; Lorsch, Jon R