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人类SNM1B对于细胞对DNA链间交联诱导剂和电离辐射的正常反应是必需的。

Human SNM1B is required for normal cellular response to both DNA interstrand crosslink-inducing agents and ionizing radiation.

作者信息

Demuth Ilja, Digweed Martin, Concannon Patrick

机构信息

Molecular Genetics Program, Benaroya Research Institute, Seattle, WA 98101-2795, USA.

出版信息

Oncogene. 2004 Nov 11;23(53):8611-8. doi: 10.1038/sj.onc.1207895.

DOI:10.1038/sj.onc.1207895
PMID:15467758
Abstract

DNA interstrand crosslinks (ICLs) are critical lesions for the mammalian cell since they affect both DNA strands and block transcription and replication. The repair of ICLs in the mammalian cell involves components of different repair pathways such as nucleotide-excision repair and the double-strand break/homologous recombination repair pathways. However, the mechanistic details of mammalian ICL repair have not been fully delineated. We describe here the complete coding sequence and the genomic organization of hSNM1B, one of at least three human homologs of the Saccharomyces cerevisiae PSO2 gene. Depletion of hSNM1B by RNA interference rendered cells hypersensitive to ICL-inducing agents. This requirement for hSNM1B in the cellular response to ICL has been hypothesized before but never experimentally verified. In addition, siRNA knockdown of hSNM1B rendered cells sensitive to ionizing radiation, suggesting the possibility of hSNM1B involvement in homologous recombination repair of double-strand breaks arising as intermediates of ICL repair. Monoubiquitination of FANCD2, a key step in the FANC/BRCA pathway, is not affected in hSNM1B-depleted HeLa cells, indicating that hSNM1B is probably not a part of the Fanconi anemia core complex. Nonetheless, similarities in the phenotype of hSNM1B-depleted cells and cultured cells from patients suffering from Fanconi anemia make hSNM1B a candidate for one of the as yet unidentified Fanconi anemia genes not involved in monoubiquitination of FANCD2.

摘要

DNA链间交联(ICLs)是哺乳动物细胞中的关键损伤,因为它们会影响两条DNA链,并阻断转录和复制。哺乳动物细胞中ICLs的修复涉及不同修复途径的成分,如核苷酸切除修复和双链断裂/同源重组修复途径。然而,哺乳动物ICL修复的机制细节尚未完全阐明。我们在此描述了hSNM1B的完整编码序列和基因组结构,hSNM1B是酿酒酵母PSO2基因至少三个人类同源物之一。通过RNA干扰使hSNM1B缺失,会使细胞对ICL诱导剂高度敏感。之前曾推测细胞对ICL的反应需要hSNM1B,但从未经过实验验证。此外,hSNM1B的siRNA敲低使细胞对电离辐射敏感,这表明hSNM1B可能参与了作为ICL修复中间体产生的双链断裂的同源重组修复。FANCD2的单泛素化是FANC/BRCA途径中的关键步骤,在hSNM1B缺失的HeLa细胞中不受影响,这表明hSNM1B可能不是范可尼贫血核心复合物的一部分。尽管如此,hSNM1B缺失细胞的表型与范可尼贫血患者培养细胞的表型相似,这使得hSNM1B成为尚未鉴定的不参与FANCD2单泛素化的范可尼贫血基因之一的候选基因。

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