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

Computational Stabilization of a Non-Heme Iron Enzyme Enables Efficient Evolution of New Function

通过计算方法稳定非血红素铁酶,可以高效地进化出新的功能

King, Brianne R; Sumida, Kiera H; Caruso, Jessica L; Baker, David; Zalatan, Jesse G

De novo design of inducibly assembling multi-component filaments

从头设计可诱导组装的多组分丝状结构

Shen, Hao; Lynch, Eric M; Jameson, Noel; Decarreau, Justin; Shi, Chenyang; Chen, Zibo; Sheffler, William; Xu, Miaomiao; De Yoreo, James J; Zalatan, Jesse G; Kollman, Justin M; Baker, David

Guide RNA structure design enables combinatorial CRISPRa programs for biosynthetic profiling

引导 RNA 结构设计使组合 CRISPRa 程序能够进行生物合成分析

Jason Fontana #, David Sparkman-Yager #, Ian Faulkner #, Ryan Cardiff, Cholpisit Kiattisewee, Aria Walls, Tommy G Primo, Patrick C Kinnunen, Hector Garcia Martin, Jesse G Zalatan, James M Carothers1

CRISPR-Cas tools for simultaneous transcription & translation control in bacteria

用于细菌转录和翻译同步调控的 CRISPR-Cas 工具

Cardiff, Ryan A L; Faulkner, Ian D; Beall, Juliana G; Carothers, James M; Zalatan, Jesse G

Engineering bacteria for cancer immunotherapy

改造细菌用于癌症免疫疗法

Zalatan, Jesse G; Petrini, Lorenzo; Geiger, Roger

Structural and functional effects of phosphopriming and scaffolding in the kinase GSK-3β

磷酸化启动和支架作用对激酶GSK-3β的结构和功能影响

Enos, Michael D; Gavagan, Maire; Jameson, Noel; Zalatan, Jesse G; Weis, William I

Computational stabilization of a non-heme iron enzyme enables efficient evolution of new function

通过计算方法稳定非血红素铁酶,可以有效地进化出新的功能

King, Brianne R; Sumida, Kiera H; Caruso, Jessica L; Baker, David; Zalatan, Jesse G

The Axin scaffold protects the kinase GSK3β from cross-pathway inhibition

Axin 支架保护激酶 GSK3β 免受跨通路抑制

Maire Gavagan, Noel Jameson, Jesse G Zalatan

Expanding the Scope of Bacterial CRISPR Activation with PAM-Flexible dCas9 Variants

利用PAM柔性dCas9变体扩展细菌CRISPR激活的范围

Cholpisit Kiattisewee,Ava V Karanjia,Mateusz Legut,Zharko Daniloski,Samantha E Koplik,Joely Nelson,Benjamin P Kleinstiver,Neville E Sanjana,James M Carothers,Jesse G Zalatan

CRISPR-Cas-Mediated Tethering Recruits the Yeast HMR Mating-Type Locus to the Nuclear Periphery but Fails to Silence Gene Expression

CRISPR-Cas介导的连接可将酵母HMR交配型基因座募集到核周,但无法抑制基因表达。

Cliff, Emily R; Kirkpatrick, Robin L; Cunningham-Bryant, Daniel; Fernandez, Brianna; Harman, Joseph L; Zalatan, Jesse G