Department of Internal Medicine, School of Medicine, Keio University, Tokyo, Japan,
Department of Internal Medicine, School of Medicine, Keio University, Tokyo, Japan.
Am J Nephrol. 2019;50(2):81-91. doi: 10.1159/000501356. Epub 2019 Jun 26.
The DNA repair system is essential for the maintenance of genome integrity and is mainly investigated in the areas of aging and cancer. The DNA repair system is strikingly cell-type specific, depending on the expression of DNA repair factors; therefore, different DNA repair systems may exist in each type of kidney cell. Importance of DNA repair in the kidney is suggested by renal phenotypes caused by both genetic mutations in the DNA repair pathway and increased stimuli of DNA damage. Recently, we reported the importance of DNA double-strand break repair in glomerular podocytes and its involvement in the alteration of DNA methylation status, which regulates podocyte phenotypes. In this review, we summarize the roles of the DNA repair system in the kidneys and possible associations with altered kidney DNA methylation, which have been infrequently reported together. Investigations of DNA damage repair and epigenetic changes in the kidneys may achieve a profound understanding of kidney aging and diseases.
DNA 修复系统对于维持基因组完整性至关重要,主要在衰老和癌症领域进行研究。DNA 修复系统具有明显的细胞类型特异性,取决于 DNA 修复因子的表达;因此,不同类型的肾细胞可能存在不同的 DNA 修复系统。DNA 修复在肾脏中的重要性体现在 DNA 修复途径的基因突变和 DNA 损伤刺激增加所导致的肾脏表型上。最近,我们报道了 DNA 双链断裂修复在肾小球足细胞中的重要性及其在调节足细胞表型的 DNA 甲基化状态改变中的作用。在这篇综述中,我们总结了 DNA 修复系统在肾脏中的作用及其与肾脏 DNA 甲基化改变的可能关联,这些关联很少被同时报道。对肾脏中 DNA 损伤修复和表观遗传变化的研究可能会深入了解肾脏衰老和疾病。