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在一个小鼠抑制筛选中发现了 MITF 调控的新机制。

Novel mechanisms of MITF regulation identified in a mouse suppressor screen.

机构信息

Department of Biochemistry and Molecular Biology, BioMedical Center, Faculty of Medicine, University of Iceland, Sturlugata 8, 102, Reykjavík, Iceland.

Department of Biochemistry, Science Institute, School of Engineering and Natural Sciences, University of Iceland, Sturlugata 7, 102, Reykjavík, Iceland.

出版信息

EMBO Rep. 2024 Oct;25(10):4252-4280. doi: 10.1038/s44319-024-00225-3. Epub 2024 Aug 21.

Abstract

MITF, a basic Helix-Loop-Helix Zipper (bHLHZip) transcription factor, plays vital roles in melanocyte development and functions as an oncogene. We perform a genetic screen for suppressors of the Mitf-associated pigmentation phenotype in mice and identify an intragenic Mitf mutation that terminates MITF at the K316 SUMOylation site, leading to loss of the C-end intrinsically disordered region (IDR). The resulting protein is more nuclear but less stable than wild-type MITF and retains DNA-binding ability. As a dimer, it can translocate wild-type and mutant MITF partners into the nucleus, improving its own stability thus ensuring nuclear MITF supply. smFRET analysis shows interactions between K316 SUMOylation and S409 phosphorylation sites across monomers; these interactions largely explain the observed effects. The recurrent melanoma-associated E318K mutation in MITF, which affects K316 SUMOylation, also alters protein regulation in concert with S409. This suggests that residues K316 and S409 of MITF are impacted by SUMOylation and phosphorylation, respectively, mediating effects on nuclear localization and stability through conformational changes. Our work provides a novel mechanism of genetic suppression, and an example of how apparently deleterious mutations lead to normal phenotypes.

摘要

MITF 是一种基本的螺旋-环-螺旋拉链(bHLHZip)转录因子,在黑素细胞发育中发挥重要作用,并作为癌基因发挥作用。我们在小鼠中进行了 MITF 相关色素沉着表型的抑制基因的遗传筛选,并鉴定出一个内含子 MITF 突变,该突变在 K316 SUMOylation 位点终止 MITF,导致 C 端固有无序区(IDR)丢失。由此产生的蛋白质比野生型 MITF 更多核但更不稳定,并保留 DNA 结合能力。作为二聚体,它可以将野生型和突变型 MITF 伴侣易位到细胞核中,从而提高自身稳定性,从而确保核 MITF 的供应。smFRET 分析表明单体之间 K316 SUMOylation 和 S409 磷酸化位点之间存在相互作用;这些相互作用在很大程度上解释了观察到的效果。MITF 中的复发性黑色素瘤相关 E318K 突变影响 K316 SUMOylation,也与 S409 协同改变蛋白质调节。这表明 MITF 的 K316 和 S409 残基分别受到 SUMOylation 和磷酸化的影响,通过构象变化介导核定位和稳定性的影响。我们的工作提供了一种新的遗传抑制机制的例子,以及看似有害的突变如何导致正常表型的例子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/044d/11467436/b029844efd8d/44319_2024_225_Fig1_HTML.jpg

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