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

Chemical Proteomics Reveals Regulation of Bile Salt Hydrolases via Oxidative Post-translational Modifications

化学蛋白质组学揭示胆汁盐水解酶通过氧化翻译后修饰进行调控

Bracken, Amy K; Malarney, Kien P; Chang, Pamela V

A class of metallohydrolases expands bile salt hydrolase activity in the gut

一类金属水解酶可增强肠道内胆汁酸盐水解酶的活性。

Malarney, Kien P; Scott, Samantha A; Chang, Pamela V

Chemoproteomic profiling of substrate specificity in gut microbiota-associated bile salt hydrolases.

肠道微生物群相关胆汁酸盐水解酶底物特异性的化学蛋白质组学分析

Han Lin, Pendleton Augustus, Singh Adarsh, Xu Raymond, Scott Samantha A, Palma Jaymee A, Diebold Peter, Malarney Kien P, Brito Ilana L, Chang Pamela V

Chemical proteomics reveals regulation of bile salt hydrolases via oxidative post-translational modifications

化学蛋白质组学揭示了胆盐水解酶通过氧化性翻译后修饰进行调控

Bracken, Amy K; Malarney, Kien P; Chang, Pamela V

Dopamine receptor D2 confers colonization resistance via microbial metabolites.

多巴胺受体D2通过微生物代谢产物赋予定植抵抗力

Scott Samantha A, Fu Jingjing, Chang Pamela V

Microbial metabolite-receptor interactions in the gut microbiome

肠道微生物组中的微生物代谢物-受体相互作用

Chang, Pamela V

Bile Salt Hydrolase Activity-Based Probes for Monitoring Gut Microbial Bile Acid Metabolism

基于胆盐水解酶活性的探针用于监测肠道微生物胆汁酸代谢

Han, Lin; Xu, Raymond; Conwell, Amanda N; Takahashi, Sola; Parasar, Bibudha; Chang, Pamela V

Chemoproteomic profiling of substrate specificity in gut microbiota-associated bile salt hydrolases

肠道菌群相关胆汁酸盐水解酶底物特异性的化学蛋白质组学分析

Han, Lin; Pendleton, Augustus; Singh, Adarsh; Xu, Raymond; Scott, Samantha A; Palma, Jaymee A; Diebold, Peter; Malarney, Kien P; Brito, Ilana L; Chang, Pamela V

Activity-based protein profiling in microbes and the gut microbiome

微生物和肠道微生物组的活性蛋白谱分析

Han, Lin; Chang, Pamela V

Chemoproteomic Approaches for Unraveling Prokaryotic Biology

化学蛋白质组学方法揭示原核生物学

Malarney, Kien P; Chang, Pamela V