FRE 3086 Instabilité génétique: Maladies rares et cancers, Université de Nice Sophia-Antipolis, CNRS, Nice Cedex 2, France.
Nucleic Acids Res. 2010 Jun;38(11):3655-71. doi: 10.1093/nar/gkq098. Epub 2010 Feb 25.
MSH5 is a MutS-homologous protein required for meiotic DNA recombination. In addition, recent studies suggest that the human MSH5 protein (hMSH5) participates to mitotic recombination and to the cellular response to DNA damage and thus raise the possibility that a tight control of hMSH5 function(s) may be important for genomic stability. With the aim to characterize mechanisms potentially involved in the regulation of hMSH5 activity, we investigated its intracellular trafficking properties. We demonstrate that hMSH5 possesses a CRM1-dependent nuclear export signal (NES) and a nuclear localization signal that participates to its nuclear targeting. Localization analysis of various mutated forms of hMSH5 by confocal microscopy indicates that hMSH5 shuttles between the nucleus and the cytoplasm. We also provide evidence suggesting that hMSH5 stability depends on its subcellular compartmentalization, hMSH5 being much less stable in the nucleus than in the cytoplasm. Together, these data suggest that hMSH5 activity may be regulated by nucleocytoplasmic shuttling and nuclear proteasomal degradation, both of these mechanisms contributing to the control of nuclear hMSH5 content. Moreover, data herein also support that in tissues where both hMSH5 and hMSH4 proteins are expressed, hMSH5 might be retained in the nucleus through masking of its NES by binding of hMSH4.
MSH5 是一种与 MutS 同源的蛋白质,对于减数分裂 DNA 重组是必需的。此外,最近的研究表明,人类 MSH5 蛋白(hMSH5)参与有丝分裂重组和细胞对 DNA 损伤的反应,因此,hMSH5 功能的严格控制可能对基因组稳定性很重要。为了描述可能参与 hMSH5 活性调控的机制,我们研究了其细胞内运输特性。我们证明 hMSH5 具有 CRM1 依赖性核输出信号(NES)和核定位信号,参与其核靶向。通过共聚焦显微镜对各种突变形式的 hMSH5 进行定位分析表明,hMSH5 在核和细胞质之间穿梭。我们还提供了证据表明,hMSH5 的稳定性取决于其亚细胞区室化,hMSH5 在核内的稳定性远低于细胞质。总之,这些数据表明,hMSH5 的活性可能受到核质穿梭和核蛋白酶体降解的调控,这两种机制都有助于控制核内 hMSH5 的含量。此外,本文中的数据还支持在同时表达 hMSH5 和 hMSH4 蛋白的组织中,hMSH5 可能通过与 hMSH4 结合掩盖其 NES 而保留在核内。