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Endogenous formaldehyde is a hematopoietic stem cell genotoxin and metabolic carcinogen

机译:内源性甲醛是一种造血干细胞基因毒素和代谢致癌物质

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摘要

Endogenous formaldehyde is produced by numerous biochemical pathways fundamental to life, and it can crosslink both DNA and proteins. However, the consequences of its accumulation are unclear. Here we show that endogenous formaldehyde is removed by the enzyme alcohol dehydrogenase 5 (ADH5/GSNOR), and Adh5(-/-) mice therefore accumulate formaldehyde adducts in DNA. The repair of this damage is mediated by FANCD2, a DNA crosslink repair protein. Adh5(-/-)Fancd2(-/-) mice reveal an essential requirement for these protection mechanisms in hematopoietic stem cells (HSCs), leading to their depletion and precipitating bone marrow failure. More widespread formaldehyde-induced DNA damage also causes karyomegaly and dysfunction of hepatocytes and nephrons. Bone marrow transplantation not only rescued hematopoiesis but, surprisingly, also preserved nephron function. Nevertheless, all of these animals eventually developed fatal malignancies. Formaldehyde is therefore an important source of endogenous DNA damage that is counteracted in mammals by a conserved protection mechanism.
机译:内源性甲醛是生命的许多生化途径产生的,它可以使DNA和蛋白质交联。但是,其积累的后果尚不清楚。在这里,我们显示内源性甲醛被乙醇脱氢酶5(ADH5 / GSNOR)去除,Adh5(-/-)小鼠因此在DNA中积累了甲醛加合物。这种损伤的修复由DNA交联修复蛋白FANCD2介导。 Adh5(-/-)Fancd2(-/-)小鼠揭示了造血干细胞(HSC)中这些保护机制的基本要求,导致其耗竭并加剧了骨髓衰竭。甲醛引起的更广泛的DNA损伤也会引起核细胞增多以及肝细胞和肾单位的功能障碍。骨髓移植不仅挽救了造血功能,而且令人惊讶地还保留了肾单位功能。尽管如此,所有这些动物最终都发展出致命的恶性肿瘤。因此,甲醛是内源性DNA损伤的重要来源,其在哺乳动物中通过保守的保护机制得以抵消。

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