Yi Wei, Wu Xiling, Lee Tai-Hsien, Doggett Norman A, Her Chengtao
School of Molecular Biosciences and Center for Reproductive Biology, Washington State University, Pullman 99164-4660, USA.
Biochem Biophys Res Commun. 2005 Jul 1;332(2):524-32. doi: 10.1016/j.bbrc.2005.04.154.
MSH5 is known to play functional roles in an array of cellular processes such as DNA damage response and meiotic homologous recombination. Here, we report the characterization of an hMSH5 splicing variant (hMSH5sv) that resulted from the retention of the last 51 bp of hMSH5 intron 6, in which the encoded 17-amino acid insertion between codons 179 and 180 does not compromise its capability to interact with hMSH4. We have also identified an hMSH5 polymorphism (C85T) [corrected] that altered codon 29 of the hMSH5 gene resulting in a proline-to-serine change (P29S). The interaction domains of hMSH4 and hMSH5 have also been resolved. The P29S alteration is located within the interacting domain and leads to a weakened protein interaction with hMSH4. Together, our present study revealed the existence of two forms of hMSH5 variants in human cells. The different properties associated with these two hMSH5 variants underscore the potential functional diversity of the human hMSH5 gene.
已知MSH5在一系列细胞过程中发挥功能作用,如DNA损伤反应和减数分裂同源重组。在此,我们报告了一种hMSH5剪接变体(hMSH5sv)的特征,它是由hMSH5内含子6的最后51个碱基对保留所致,其中编码的位于密码子179和180之间的17个氨基酸插入并不影响其与hMSH4相互作用的能力。我们还鉴定出一种hMSH5多态性(C85T)[已校正],它改变了hMSH5基因的密码子29,导致脯氨酸变为丝氨酸(P29S)。hMSH4和hMSH5的相互作用结构域也已得到解析。P29S改变位于相互作用结构域内,导致与hMSH4的蛋白质相互作用减弱。总之,我们目前的研究揭示了人类细胞中存在两种形式的hMSH5变体。与这两种hMSH5变体相关的不同特性突显了人类hMSH5基因潜在的功能多样性。