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S427F突变对视黄酸X受体α(RXRα)活性的影响取决于其二聚体伴侣。

The effect of S427F mutation on RXRα activity depends on its dimeric partner.

作者信息

Galdadas Ioannis, Bonis Vangelis, Vgenopoulou Paraskevi, Papadourakis Michail, Kakoulidis Panos, Stergiou Georgia, Cournia Zoe, Klinakis Apostolos

机构信息

Biomedical Research Foundation Academy of Athens Athens Greece

Data Science and Information Technologies, Department of Informatics and Telecommunication, National and Kapodistrian University of Athens Athens Greece.

出版信息

Chem Sci. 2021 Oct 8;12(44):14700-14710. doi: 10.1039/d1sc04465f. eCollection 2021 Nov 17.

Abstract

RXRs are nuclear receptors acting as transcription regulators that control key cellular processes in all tissues. All type II nuclear receptors require RXRs for transcriptional activity by forming heterodimeric complexes. Recent whole-exome sequencing studies have identified the RXRα S427F hotspot mutation in 5% of the bladder cancer patients, which is always located at the interface of RXRα with its obligatory dimerization partners. Here, we show that mutation of S427 deregulates transcriptional activity of RXRα dimers, albeit with diverse allosteric mechanisms of action depending on its dimeric partner. S427F acts by allosteric mechanisms, which range from inducing the collapse of the binding pocket to allosteric stabilization of active co-activator competent RXRα states. Unexpectedly, RXR S427F heterodimerization leads to either loss- or gain-of-function complexes, in both cases likely compromising its tumor suppressor activity. This is the first report of a cancer-associated single amino acid substitution that affects the function of the mutant protein variably depending on its dimerization partner.

摘要

视黄酸X受体(RXRs)是作为转录调节因子的核受体,可控制所有组织中的关键细胞过程。所有II型核受体都需要通过形成异二聚体复合物与RXRs共同发挥转录活性。最近的全外显子测序研究在5%的膀胱癌患者中发现了RXRα S427F热点突变,该突变总是位于RXRα与其必需的二聚化伙伴的界面处。在此,我们表明S427突变会失调RXRα二聚体的转录活性,尽管根据其二聚体伙伴的不同,其变构作用机制也有所不同。S427F通过变构机制发挥作用,其范围从诱导结合口袋的塌陷到对具有活性共激活因子能力的RXRα状态的变构稳定。出乎意料的是,RXR S427F异二聚化会导致功能丧失或功能获得复合物的形成,在这两种情况下都可能损害其肿瘤抑制活性。这是首次报道一种与癌症相关的单氨基酸取代,该取代根据其二聚化伙伴的不同而可变地影响突变蛋白的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d610/8597827/b41fd4b77906/d1sc04465f-f1.jpg

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