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表达、纯化和鉴定视网膜母细胞瘤结合蛋白 6(RBBP6)的 p53 结合结构域。

Expression, purification, and characterisation of the p53 binding domain of Retinoblastoma binding protein 6 (RBBP6).

机构信息

Department of Life and Consumer Sciences, College of Agriculture and Environmental Sciences, University of South Africa, Florida, Roodepoort, South Africa.

Innovation Hub, Buboo (Pty) Ltd, Pretoria, South Africa.

出版信息

PLoS One. 2023 Feb 10;18(2):e0277478. doi: 10.1371/journal.pone.0277478. eCollection 2023.

Abstract

RBBP6 is a 250 kDa eukaryotic protein known to be a negative regulator of p53 and essential for embryonic development. Furthermore, RBBP6 is a critical element in carcinogenesis and has been identified as a potential biomarker for certain cancers. RBBP6's ability to interact with p53 and cause its degradation makes it a potential drug target in cancer therapy. Therefore, a better understating of the p53 binding domain of RBBP6 is needed. This study presents a three-part purification protocol for the polyhistidine-tagged p53 binding domain of RBBP6, expressed in Escherichia coli bacterial cells. The purified recombinant domain was shown to have structure and is functional as it could bind endogenous p53. We characterized it using clear native PAGE and far-UV CD and found that it exists in a single form, most likely monomer. We predict that its secondary structure is predominantly random coil with 19% alpha-helices, 9% beta-strand and 14% turns. When we exposed the recombinant domain to increasing temperature or known denaturants, our investigation suggested that the domain undergoes relatively small structural changes, especially with increased temperature. Moreover, we notice a high percentage recovery after returning the domain close to starting conditions. The outcome of this study is a pure, stable, and functional recombinant RBBP6-p53BD that is primarily intrinsically disordered.

摘要

RBBP6 是一种 250 kDa 的真核蛋白,已知是 p53 的负调控因子,对胚胎发育至关重要。此外,RBBP6 是致癌作用的关键因素,已被确定为某些癌症的潜在生物标志物。RBBP6 与 p53 相互作用并导致其降解的能力使其成为癌症治疗的潜在药物靶点。因此,需要更好地了解 RBBP6 的 p53 结合域。本研究提出了一种三步纯化方案,用于从大肠杆菌细菌细胞中表达的 polyhistidine 标记的 RBBP6 p53 结合域。纯化的重组结构域具有结构和功能,因为它可以结合内源性 p53。我们使用清晰的 nativePAGE 和远紫外线 CD 对其进行了表征,发现它以单一形式存在,很可能是单体。我们预测其二级结构主要是无规卷曲,含有 19%的α-螺旋、9%的β-折叠和 14%的转角。当我们将重组结构域暴露于升高的温度或已知的变性剂时,我们的研究表明该结构域发生了相对较小的结构变化,特别是随着温度的升高。此外,我们注意到在接近起始条件后,该结构域有很高的回收率。本研究的结果是一种纯的、稳定的、功能的重组 RBBP6-p53BD,主要是固有无序的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52c7/9916574/d67abc092f7c/pone.0277478.g001.jpg

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