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

Discovery of Glycation-Derived Cross-links at Arginine

精氨酸糖基化衍生交联的发现

Jacob-Dolan, Jeremiah W; Sterling, Amy C; Brutus, Morgan E; Hansel, Stefan M; Scheck, Rebecca A

Predictable Modulation of a Spontaneous Post-translational Modification in Living Cells

活细胞中自发性翻译后修饰的可预测调控

Martin, Meghan S; Bayaraa, Nomindari; Fox, Brittany T; Lin, Yu-Shan; Scheck, Rebecca A

A Chemical Mechanistic Path Leads the Way to Cellular Argpyrimidine

化学机制途径引领细胞精氨酸嘧啶的合成

Tin Pham, Vo Tri; Datta, Suprama; Sterling, Amy C; Hansel, Stefan M; Scheck, Rebecca A

The chemical language of protein glycation

蛋白质糖基化的化学语言

Martin, Meghan S; Jacob-Dolan, Jeremiah W; Pham, Vo Tri Tin; Sjoblom, Nicole M; Scheck, Rebecca A

DEVELOPMENT OF AN AUTOMATION SYSTEM OF CULTURE AND LONGITUDINAL EVALUATION OF PATIENT IPS CELL-DERIVED ORGANOIDS (ASCLEPIOS)

患者诱导多能干细胞衍生类器官培养及纵向评估自动化系统的开发(ASCLEPIOS)

Pham, Vo Tri Tin; Datta, Suprama; Sterling, Amy C; Hansel, Stefan M; Scheck, Rebecca A; Shiraishi, *Atsushi; Inoue, Takahito; Takaba, Junji; Futamura, Takashi

A Cyclic Arginine Adduct Eclipses Carboxymethylation as the Primary Glyoxal-Derived Advanced Glycation End-Product

环状精氨酸加合物取代羧甲基化,成为主要的乙二醛衍生的高级糖基化终产物。

Brutus, Morgan E; Girard, Colby S; Jacob-Dolan, Jeremiah W; Scheck, Rebecca A

Discovery of Glycation-Derived Crosslinks at Arginine

精氨酸糖基化衍生交联的发现

Jacob-Dolan, Jeremiah W; Sterling, Amy C; Brutus, Morgan E; Hansel, Stefan M; Scheck, Rebecca A

A Modular Turn-On Strategy to Profile E2-Specific Ubiquitination Events in Living Cells

一种用于分析活细胞中E2特异性泛素化事件的模块化开启策略

Hill, Caitlin J; Datta, Suprama; McCurtin, Nicholas P; Kimball, Hannah Z; Kingsley, Molly C; Bayer, Abraham L; Martin, Alexander C; Peng, Qianni; Weerapana, Eranthie; Scheck, Rebecca A

Dual Noncanonical Amino Acid Incorporation Enabling Chemoselective Protein Modification at Two Distinct Sites in Yeast

双重非经典氨基酸掺入实现酵母中两个不同位点的化学选择性蛋白质修饰

Lahiri, Priyanka; Martin, Meghan S; Lino, Briana R; Scheck, Rebecca A; Van Deventer, James A

Parkinsonism-Associated Protein DJ-1 Is an Antagonist, Not an Eraser, for Protein Glycation.

帕金森病相关蛋白 DJ-1 是蛋白质糖化的拮抗剂,而不是消除剂

Gao Qingzeng, Jacob-Dolan Jeremiah W, Scheck Rebecca A