小染色体维持蛋白6与布卢姆综合征解旋酶分子相互作用的生物物理研究。

Min June Yang, Haeun Lee, Donguk Kang, Chin-Ju Park
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引用次数: 0

摘要

微染色体维持蛋白(MCM)复合体和布卢姆综合征解旋酶(BLM)是DNA复制和细胞分裂的重要组成部分。MCM是一种解绕双链DNA的六聚解旋酶,是癌细胞诊断和预后的重要生物标志物,也是抗癌药物开发的靶标。与g -四重体结构相关的BLM是维持基因组稳定性的另一个关键解旋酶。在本研究中,我们在原子水平上研究了MCM6和BLM之间的相互作用,因为它们的表达水平在各种癌症类型中高度相关,表达水平升高表明预后不良。为了阐明MCM6/BLM相互作用的分子基础,我们采用了荧光极化各向异性分析、核磁共振化学位移摄动分析(CSP)和顺磁弛豫增强(PRE)实验。MCM6结合域(MBD) C和D与MCM6翼螺旋结构域(WHD)具有相似的结合亲和力。然而,MBD-D和PRE实验的显著csp表明,MBD-D比MBD-C更接近MCM6 WHD。尽管这两种蛋白都含有大量带负电荷的残基,但疏水相互作用控制着MCM6 WHD和BLM MBD-D之间的关联。MCM6/BLM相互作用的生物物理特性为它们的功能关系提供了新的见解,并对现有模型提出了挑战。我们的研究结果表明,MCM6与BLM在不同的位点结合,而不是与其他已知的染色质许可和DNA复制因子结合。在分子水平上理解这些蛋白-蛋白相互作用可能有助于开发针对MCM6/BLM相互作用的新型抗癌疗法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biophysical investigation of the molecular interaction between minichromosome maintenance protein 6 and Bloom syndrome helicase.

The minichromosome maintenance protein (MCM) complex and Bloom syndrome helicase (BLM) are crucial components in DNA replication and cell division. MCM, a hexameric helicase that unwinds double-stranded DNA, serves as an important diagnostic and prognostic biomarker for cancer cells and a target for anticancer drug development. BLM, associated with G-quadruplex structures, is another key helicase in maintaining genomic stability. In this study, we investigate the interaction between MCM6 and BLM at the atomic level, as their expression levels are highly correlated in various cancer types, with elevated levels indicating poor prognosis. To elucidate the molecular basis of MCM6/BLM interaction, we employed fluorescence polarization anisotropy analysis, NMR chemical shifts perturbation analysis (CSP), and paramagnetic relaxation enhancement (PRE) experiments. MCM6 binding domain (MBD) C and D exhibit similar binding affinities to MCM6 winged-helix domain (WHD). However, significant CSPs with MBD-D and PRE experiments suggested that MBD-D is closer to MCM6 WHD than MBD-C. Despite both proteins containing numerous negatively charged residues, hydrophobic interactions govern the association between MCM6 WHD and BLM MBD-D. This biophysical characterization of the MCM6/BLM interaction provides new insights into their functional relationship and challenges existing models. Our findings reveal that MCM6 binds BLM at a different site than its other known partner chromatin licensing and DNA replication factor. Understanding these protein-protein interactions at the molecular level may contribute to the development of novel anticancer therapies targeting the MCM6/BLM interaction.

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