Jo Chan Song, Zhao Hairu, Hwang Jae Sung
Department of Genetics and Biotechnology, Graduate School of Biotechnology, College of Life Sciences, Kyung Hee University, Yongin, Korea.
Sci Rep. 2025 Jan 17;15(1):2338. doi: 10.1038/s41598-025-86282-7.
Melanosome transport is regulated by major proteins, including Rab27a, Melanophilin (Mlph), and Myosin Va (Myo-Va), that form a tripartite complex. Mutation of these proteins causes melanosome aggregation around the nucleus. Among these proteins, Mlph is a linker between Rab27a and Myo-Va. There are some studies about the regulation of Mlph transcriptional expression. However, its regulation by post-translational modifications remains unclear. In this study, inhibition of HDACs by SAHA and TSA disrupted melanosome transport, causing melanosome aggregation. Specifically, we identified a novel mechanism in which HDAC5 regulates Mlph expression via Sp1. Knockdown of HDAC5 increased the acetylation of Sp1 and the binding to the Mlph promoter, thereby modulating its expression. This study highlights the crucial role of HDAC5 in melanosome transport through its interaction with Sp1. These findings suggest that HDAC5-mediated deacetylation is pivotal in the post-translational modification of melanosome transport, providing insights into the molecular mechanisms underlying this process.
黑素小体运输由包括Rab27a、黑素亲和素(Mlph)和肌球蛋白Va(Myo-Va)在内的主要蛋白质调节,这些蛋白质形成一个三方复合物。这些蛋白质的突变会导致黑素小体在细胞核周围聚集。在这些蛋白质中,Mlph是Rab27a和Myo-Va之间的连接蛋白。关于Mlph转录表达的调节已有一些研究。然而,其翻译后修饰的调节仍不清楚。在本研究中,SAHA和TSA对组蛋白去乙酰化酶(HDACs)的抑制作用破坏了黑素小体运输,导致黑素小体聚集。具体而言,我们发现了一种新机制,即HDAC5通过Sp1调节Mlph的表达。敲低HDAC5会增加Sp1的乙酰化以及与Mlph启动子的结合,从而调节其表达。本研究强调了HDAC5通过与Sp1相互作用在黑素小体运输中的关键作用。这些发现表明,HDAC5介导的去乙酰化在黑素小体运输的翻译后修饰中起关键作用,为这一过程的分子机制提供了见解。