Tauchi H, Kobayashi J, Morishima K, Matsuura S, Nakamura A, Shiraishi T, Ito E, Masnada D, Delia D, Komatsu K
Department of Radiation Biology, Research Institute for Radiation Biology and Medicine, Hiroshima University, Kasumi 1-2-3, Minami-ku, Hiroshima 734-8553, Japan.
J Biol Chem. 2001 Jan 5;276(1):12-5. doi: 10.1074/jbc.C000578200.
NBS1 (p95), the protein responsible for Nijmegen breakage syndrome, shows a weak homology to the yeast Xrs2 protein at the N terminus region, known as the forkhead-associated (FHA) domain and the BRCA1 C terminus domain. The protein interacts with hMRE11 to form a complex with a nuclease activity for initiation of both nonhomologous end joining and homologous recombination. Here, we show in vivo direct evidence that NBS1 recruits the hMRE11 nuclease complex into the cell nucleus and leads to the formation of foci by utilizing different functions from several domains. The amino acid sequence at 665-693 on the C terminus of NBS1, where a novel identical sequence with yeast Xrs2 protein was found, is essential for hMRE11 binding. The hMRE11-binding region is necessary for both nuclear localization of the complex and for cellular radiation resistance. On the other hand, the FHA domain regulates nuclear foci formation of the multiprotein complex in response to DNA damage but is not essential for nuclear transportation of the complex and radiation resistance. Because the FHA/BRCA1 C terminus domain is widely conserved in eukaryotic nuclear proteins related to the cell cycle, gene regulation, and DNA repair, the foci formation could be associated with many phenotypes of Nijmegen breakage syndrome other than radiation sensitivity.
NBS1(p95)是导致尼曼-匹克氏症候群断裂综合征的蛋白质,在其N端区域与酵母Xrs2蛋白显示出微弱的同源性,该区域被称为叉头相关(FHA)结构域和BRCA1 C端结构域。该蛋白质与hMRE11相互作用,形成具有核酸酶活性的复合物,用于启动非同源末端连接和同源重组。在这里,我们展示了体内直接证据,即NBS1通过利用几个结构域的不同功能将hMRE11核酸酶复合物招募到细胞核中并导致焦点的形成。在NBS1 C端665-693处的氨基酸序列,发现了与酵母Xrs2蛋白相同的新序列,这对于hMRE11结合至关重要。hMRE11结合区域对于复合物的核定位和细胞抗辐射性都是必需的。另一方面,FHA结构域响应DNA损伤调节多蛋白复合物的核焦点形成,但对于复合物的核运输和抗辐射性不是必需的。由于FHA/BRCA1 C端结构域在与细胞周期、基因调控和DNA修复相关的真核核蛋白中广泛保守,焦点形成可能与尼曼-匹克氏症候群断裂综合征除辐射敏感性之外的许多表型相关。