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奈梅亨断裂综合征及相关蛋白NBS1的功能

Nijmegen breakage syndrome and functions of the responsible protein, NBS1.

作者信息

Antoccia A, Kobayashi J, Tauchi H, Matsuura S, Komatsu K

机构信息

Department of Biology, University 'Roma Tre', Rome, Italy.

出版信息

Genome Dyn. 2006;1:191-205. doi: 10.1159/000092508.

Abstract

Nijmegen breakage syndrome (NBS) is a rare recessive genetic disorder, characterized by bird-like facial appearance, early growth retardation, congenital microcephaly, immunodeficiency and high frequency of malignancies. NBS belongs to the so-called chromosome instability syndromes; in fact, NBS cells display spontaneous chromosomal aberrations and are hypersensitive to DNA double-strand break-inducing agents, such as ionizing radiations. NBS1, the gene underlying the disease, is located on human chromosome 8q21. The disease appears to be prevalent in the Eastern and Central European population where more than 90% of patients are homozygous for the founder mutation 657del5 leading to a truncated variant of the protein. NBS1 forms a multimeric complex with MRE11/RAD50 nuclease at the C-terminus and retains or recruits them at the vicinity of sites of DNA damage by direct binding to histone H2AX, which is phosphorylated by PI3-kinase family, such as ATM, in response to DNA damage. Thereafter, the NBS1-complex proceeds to rejoin double-strand breaks predominantly by homologous recombination repair in vertebrates. NBS cells also show to be defective in the activation of intra-S phase checkpoint. We review here some cellular and molecular aspects of NBS, which might contribute to the clinical symptoms of the disease.

摘要

尼美根断裂综合征(NBS)是一种罕见的隐性遗传疾病,其特征为鸟类样面容、早期生长发育迟缓、先天性小头畸形、免疫缺陷以及高频率的恶性肿瘤。NBS属于所谓的染色体不稳定综合征;事实上,NBS细胞表现出自发性染色体畸变,并且对DNA双链断裂诱导剂(如电离辐射)高度敏感。该疾病的致病基因NBS1位于人类染色体8q21上。这种疾病在东欧和中欧人群中似乎较为普遍,超过90%的患者对于导致蛋白质截短变体的始祖突变657del5是纯合的。NBS1在C末端与MRE11/RAD50核酸酶形成多聚体复合物,并通过与组蛋白H2AX直接结合,将它们保留或募集到DNA损伤位点附近,组蛋白H2AX在DNA损伤时会被PI3激酶家族(如ATM)磷酸化。此后,NBS1复合物主要通过脊椎动物中的同源重组修复来重新连接双链断裂。NBS细胞在S期内检查点的激活方面也表现出缺陷。我们在此综述NBS的一些细胞和分子方面,这些方面可能导致该疾病的临床症状。

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