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早发性衰老和与组蛋白乙酰转移酶 1 (Hat1) 缺失相关的线粒体缺陷。

Early-onset aging and mitochondrial defects associated with loss of histone acetyltransferase 1 (Hat1).

机构信息

Department of Biological Chemistry and Pharmacology, The Ohio State University, Columbus, Ohio.

Department of Neurology, The Ohio State University, Columbus, Ohio.

出版信息

Aging Cell. 2019 Oct;18(5):e12992. doi: 10.1111/acel.12992. Epub 2019 Jul 10.

Abstract

Histone acetyltransferase 1 (Hat1) is responsible for the acetylation of newly synthesized histone H4 on lysines 5 and 12 during the process of chromatin assembly. To understand the broader biological role of Hat1, we have generated a conditional mouse knockout model of this enzyme. We previously reported that Hat1 is required for viability and important for mammalian development and genome stability. In this study, we show that haploinsufficiency of Hat1 results in a significant decrease in lifespan. Defects observed in Hat1 mice are consistent with an early-onset aging phenotype. These include lordokyphosis (hunchback), muscle atrophy, minor growth retardation, reduced subcutaneous fat, cancer, and paralysis. In addition, the expression of Hat1 is linked to the normal aging process as Hat1 mRNA and protein becomes undetectable in many tissues in old mice. At the cellular level, fibroblasts from Hat1 haploinsufficient embryos undergo early senescence and accumulate high levels of p21. Hat1 mouse embryonic fibroblasts (MEFs) display modest increases in endogenous DNA damage but have significantly higher levels of reactive oxygen species (ROS). Consistently, further studies show that Hat1 MEFs exhibit mitochondrial defects suggesting a critical role for Hat1 in mitochondrial function. Taken together, these data show that loss of Hat1 induces multiple hallmarks of early-onset aging.

摘要

组蛋白乙酰转移酶 1(Hat1)负责在染色质组装过程中乙酰化新合成的组蛋白 H4 上的赖氨酸 5 和 12。为了了解 Hat1 的更广泛的生物学作用,我们已经生成了这种酶的条件性小鼠敲除模型。我们之前报道过 Hat1 对于生存是必需的,并且对于哺乳动物的发育和基因组稳定性很重要。在这项研究中,我们表明 Hat1 的杂合不足导致寿命显著缩短。在 Hat1 小鼠中观察到的缺陷与早发性衰老表型一致。这些包括脊柱后凸(驼背)、肌肉萎缩、轻微生长迟缓、皮下脂肪减少、癌症和瘫痪。此外,Hat1 的表达与正常衰老过程有关,因为在老年小鼠的许多组织中无法检测到 Hat1 mRNA 和蛋白质。在细胞水平上,来自 Hat1 杂合不足胚胎的成纤维细胞经历早期衰老并积累高水平的 p21。Hat1 小鼠胚胎成纤维细胞(MEF)显示出适度增加的内源性 DNA 损伤,但具有显著更高水平的活性氧物种(ROS)。一致地,进一步的研究表明,Hat1 MEF 表现出线粒体缺陷,表明 Hat1 在线粒体功能中起着关键作用。总之,这些数据表明 Hat1 的缺失诱导了早发性衰老的多种特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3341/6718594/8c09f9dcdb45/ACEL-18-e12992-g001.jpg

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