Proteomics

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Target identification of dioxygenated amide derivatives interacting proteins


ABSTRACT: To identify the direct binding proteins of dioxygenated amide by chemical proteomics, we firstly evaluated the efficiency of optimized probe 6D-PP probe labelling the E. coli bacterial proteomes by in-gel fluorescence. Briefly, the E. coli bacterial lysates were incubated with 100 M probe 6D-PP under 37 °C for 2 h and exposed to 365 nm UV light for 0.5 h to initiate photo-crosslinking. A blank control with only DMSO, a negative control without UV light and a control sample with pretreatment of 500 M D-PP6-C were also included. After conjugation with the TAMRA-N3 by copper-catalyzed azide-alkyne cycloaddition (CuAAC) click chemistry for another 1 h, the probe 6D-PP labelled proteins were separated with 12% SDS-PAGE and imaged by in-gel fluorescence (Fig.3B). The probe 6D-PP probe showed an efficiently UV-dependent and probe 6D-PP specific labelling, supporting it’s readily applicable in ABPP (activity-based protein profiling) experiment.

ORGANISM(S): Homo Sapiens

SUBMITTER: Rui Wang  

PROVIDER: PXD047691 | iProX | Fri Dec 08 00:00:00 GMT 2023

REPOSITORIES: iProX

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Publications

Target identification, and optimization of dioxygenated amide derivatives as potent antibacterial agents with FabH inhibitory activity.

Chang Haoyun H   Ji Ruiying R   Zhu Zhiyu Z   Wang Yapin Y   Yan Shaopeng S   He Dan D   Jia Qike Q   Huang Peng P   Cheng Tao T   Wang Rui R   Zhou Yang Y  

European journal of medicinal chemistry 20231216


The enzyme FabH plays a critical role in the initial step of fatty acid biosynthesis, which is vital for the survival of bacteria. As a result, FabH has emerged as an appealing target for the development of novel antibacterial agents. In this study, employing the chemical proteomics method, we validated the previously identified skeleton amide derivatives bearing dioxygenated rings, potentially formed through metabolic processes. Building upon the proteomics findings, we then synthesized and eva  ...[more]

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