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Broad segmental progeroid changes in short-lived Ercc1 ?/Δ7 mice

机译:短寿命Ercc1α/Δ7小鼠的广泛节段性类胚变化

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Genome maintenance is considered a prime longevity assurance mechanism as apparent from many progeroid human syndromes that are caused by genome maintenance defects. The ERCC1 protein is involved in three genome maintenance systems: nucleotide excision repair, interstrand cross-link repair, and homologous recombination. Here we describe in-life and post-mortem observations for a hypomorphic Ercc1 variant, Ercc1 ?/Δ7, which is hemizygous for a single truncated Ercc1 allele, encoding a protein lacking the last seven amino acids. Ercc1 ?/Δ7 mice were much smaller and median life span was markedly reduced compared to wild-type siblings: 20 and 118 weeks, respectively. Multiple signs and symptoms of aging were found to occur at an accelerated rate in the Ercc1 ?/Δ7 mice as compared to wild-type controls, including a decline in weight of both whole body and various organs, numerous histopathological lesions, and immune parameters. Together they define a segmental progeroid phenotype of the Ercc1 ?/Δ7 mouse model.
机译:从许多由基因组维护缺陷引起的人类早衰综合症中可以明显看出,基因组维护被认为是主要的长寿保证机制。 ERCC1蛋白参与三个基因组维持系统:核苷酸切除修复,链间交联修复和同源重组。在这里,我们描述了亚同型Ercc1变体Ercc1α/Δ7的生命和验尸观察结果,它对单个截短的Ercc1等位基因是半合子的,编码的蛋白质缺少最后七个氨基酸。与野生型同胞相比,Ercc1α/Δ7小鼠要小得多,中位寿命明显缩短:分别为20周和118周。与野生型对照相比,发现Ercc1α/Δ7小鼠以加速的速度出现多种衰老迹象和症状,包括全身和各种器官的重量下降,许多组织病理学损伤和免疫参数。它们共同定义了Ercc1α/Δ7小鼠模型的节段性胚状表型。

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