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DNA错配修复参与叶酸缺乏诱导的细胞凋亡 小星星,实心

Involvement of DNA mismatch repair in folate deficiency-induced apoptosis small star, filled.

作者信息

Gu Liya, Wu Jianxin, Qiu Lu, Jennings C Darrell, Li Guo Min

机构信息

Department of Pathology and Laboratory Medicine, Markey Cancer Center, University of Kentucky Medical Center, University of Kentucky Medical Center, 40536, Lexington, Kentucky, USA

出版信息

J Nutr Biochem. 2002 Jun;13(6):355-363. doi: 10.1016/s0955-2863(02)00178-x.

Abstract

Folate is a critical factor for DNA metabolism and its deficiency is associated with a number of human diseases and cancers. Although it has been shown that folate deficiency induces genomic instability and apoptotic cell death, the underlying mechanism is largely unknown. Given the role of mismatch repair in maintaining genomic integrity, mismatch repair was tested for its involvement in folate deficiency-induced genomic instability and cell death. Cells proficient in mismatch repair were highly sensitive to folate deficiency compared with cells defective in either hMutSalpha or hMutLalpha. Since wild-type cells but not mutant cells underwent apoptosis upon extensive folate depletion, the apoptotic response is dependent on a functional mismatch repair system. Our data also indicate that p53 is required for the folate depletion-induced apoptosis. In vitro biochemical studies demonstrated that hMutSalpha specifically recognized DNA damage induced by folate deficiency, suggesting a direct participation of mismatch repair proteins in mediating the apoptotic response. We conclude that while the mismatch repair-dependent apoptosis is necessary to protect damaged cells from tumorigenesis, it may damage a whole tissue or organ, as seen in patients with megaloblastic anemia, during extensive folate deficiency.

摘要

叶酸是DNA代谢的关键因素,其缺乏与多种人类疾病和癌症相关。尽管已有研究表明叶酸缺乏会导致基因组不稳定和凋亡性细胞死亡,但其潜在机制仍 largely 未知。鉴于错配修复在维持基因组完整性中的作用,研究了错配修复是否参与叶酸缺乏诱导的基因组不稳定和细胞死亡。与 hMutSalpha 或 hMutLalpha 缺陷的细胞相比,错配修复功能正常的细胞对叶酸缺乏高度敏感。由于野生型细胞而非突变细胞在叶酸大量耗竭时会发生凋亡,因此凋亡反应依赖于功能性错配修复系统。我们的数据还表明,p53 是叶酸耗竭诱导凋亡所必需的。体外生化研究表明,hMutSalpha 能特异性识别叶酸缺乏诱导的DNA损伤,提示错配修复蛋白直接参与介导凋亡反应。我们得出结论,虽然错配修复依赖性凋亡对于保护受损细胞免于肿瘤发生是必要的,但在叶酸大量缺乏期间,如巨幼细胞贫血患者所见,它可能会损害整个组织或器官。

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