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一种定量系统方法,用于定义肿瘤 p53 突变对结合癌蛋白 MDM2 的新作用。

A Quantitative Systems Approach to Define Novel Effects of Tumour p53 Mutations on Binding Oncoprotein MDM2.

机构信息

Cancer Research Center (IBMCC/CSIC/USAL/IBSAL), Department of Medicine and General Cytometry Service-Nucleus, CIBERONC ISCIII, 37007 Salamanca, Spain.

Cancer Research Center (IBMCC/CSIC/USAL/IBSAL), Proteomics Unit, 37007 Salamanca, Spain.

出版信息

Int J Mol Sci. 2021 Dec 21;23(1):53. doi: 10.3390/ijms23010053.

Abstract

Understanding transient protein interactions biochemically at the proteome scale remains a long-standing challenge. Current tools developed to study protein interactions in high-throughput measure stable protein complexes and provide binary readouts; they do not elucidate dynamic and weak protein interactions in a proteome. The majority of protein interactions are transient and cover a wide range of affinities. Nucleic acid programmable protein arrays (NAPPA) are self-assembling protein microarrays produced by freshly translating full-length proteins in situ on the array surface. Herein, we have coupled NAPPA to surface plasmon resonance imaging (SPRi) to produce a novel label-free platform that measures many protein interactions in real-time allowing the determination of the KDs and rate constants. The developed novel NAPPA-SPRi technique showed excellent ability to study protein-protein interactions of clinical mutants of p53 with its regulator MDM2. Furthermore, this method was employed to identify mutant p53 proteins insensitive to the drug nutlin-3, currently in clinical practice, which usually disrupts the p53-MDM2 interactions. Thus, significant differences in the interactions were observed for p53 mutants on the DNA binding domain (Arg-273-Cys, Arg-273-His, Arg-248-Glu, Arg-280-Lys), on the structural domain (His-179-Tyr, Cys-176-Phe), on hydrophobic moieties in the DNA binding domain (Arg-280-Thr, Pro-151-Ser, Cys-176-Phe) and hot spot mutants (Gly-245-Cys, Arg-273-Leu, Arg-248-Glu, Arg-248-Gly), which signifies the importance of point mutations on the MDM2 interaction and nutlin3 effect, even in molecular locations related to other protein activities.

摘要

在蛋白质组学水平上,从生化角度理解瞬时蛋白质相互作用仍然是一个长期存在的挑战。目前开发的用于高通量测量稳定蛋白质复合物的研究蛋白质相互作用的工具提供了二进制读数;它们不能阐明蛋白质组中动态和弱的蛋白质相互作用。大多数蛋白质相互作用是瞬时的,涵盖了广泛的亲和力范围。核酸可编程蛋白质阵列 (NAPPA) 是通过在阵列表面就地翻译全长蛋白质而产生的自组装蛋白质微阵列。在这里,我们将 NAPPA 与表面等离子体共振成像 (SPRi) 相结合,产生了一种新的无标记平台,可以实时测量许多蛋白质相互作用,从而确定 KD 和速率常数。开发的新型 NAPPA-SPRi 技术显示出出色的能力,可以研究 p53 的临床突变体与其调节剂 MDM2 的蛋白质-蛋白质相互作用。此外,该方法还用于鉴定对目前在临床实践中常用的药物 nutlin-3 不敏感的突变型 p53 蛋白,该药物通常会破坏 p53-MDM2 相互作用。因此,在 DNA 结合域(Arg-273-Cys、Arg-273-His、Arg-248-Glu、Arg-280-Lys)、结构域(His-179-Tyr、Cys-176-Phe)、DNA 结合域中的疏水区(Arg-280-Thr、Pro-151-Ser、Cys-176-Phe)和热点突变体(Gly-245-Cys、Arg-273-Leu、Arg-248-Glu、Arg-248-Gly)上观察到 p53 突变体的相互作用存在显著差异,这表明点突变对 MDM2 相互作用和 nutlin3 效应的重要性,即使在与其他蛋白质活性相关的分子位置也是如此。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c92f/8744954/87d535d56d2a/ijms-23-00053-g001.jpg

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