Design, synthesis and interaction of BRC4 analogous peptides with RAD51(241–260)

被引:0
|
作者
Jinlei Li
Kui Lu
Mingxiu Lv
Guangbin Liu
Li Ma
Jianzhao Qi
机构
[1] Zhengzhou University,College of Chemical
[2] Zhengzhou Institute of Technology,School of Chemical Engineering and Food Science
[3] Henan University of Engineering,School of Material and Chemical Engineering
[4] Henan University of Technology,College of Chemistry, Chemical and Environmental Engineering
[5] Northwest A&F University,Shaanxi Key Laboratory of Natural Products and Chemical Biology, College of Chemistry and Pharmacy
[6] Wuhan University,Key Laboratory of Combinatorial Biosynthesis and Drug Discovery, Wuhan University School of Pharmaceutical Sciences
[7] Ministry of Education,undefined
来源
Amino Acids | 2020年 / 52卷
关键词
BRC4; Analogous peptide; Microscale thermophoresis; Tumor suppressor; Homologous recombination;
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学科分类号
摘要
Breast cancer susceptibility gene 2 (BRCA2) is an important tumor suppressor, which is participated in repair of damaged DNA by its highly conserved BRC repeat motifs regulating RAD51 protein homologous recombination and thereby preventing cell carcinogenesis. In this study, the BRCA2(1524–1548)–RAD51(241–260) complex structure was obtained based on PDB bank data 1N0W, which provided the basis for site-specific mutation of BRCA2(1524–1548). The BRC4 and BRC4 analogous peptides were synthesized, and the interaction between BRC peptide and RAD51(241–260) was studied by fluorescence spectroscopy, circular dichroism spectroscopy and microscale thermophoresis (MST). The results of circular dichroism showed that the changes in secondary structures of RAD51(241–260) occurred after adding BRC4 analogous peptides, and the α-helix content increased significantly. Fluorescence spectral data demonstrated that the model of BRC peptide binding to RAD51(241–260) was static quenching, and the binding constants of BRC4, P1, P2, P4 with RAD51(241–260) were 1.647 × 10−4 L mol−1, 2.532 × 10−4 L mol−1, 3.161 × 10−4 L mol−1, 1.705 × 10−4 L mol−1, respectively. The results of MST indicated that P2 and RAD51(241–260) have better affinity for dissociation constant 44.286 μM. The strongest affinity between P2 and RAD51(241–260) indicated that the mutation of amino acid residue constituting BRC α-helix affects the structure and interaction of BRC peptide and RAD51(241–260).
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页码:361 / 369
页数:8
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