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Blood autophagy defect causes accelerated non-hematopoietic organ aging

机译:血液自噬缺陷导致非造血器官衰老加速

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摘要

Autophagy has been well studied in regulating aging; however, the impact of autophagy in one organ on the aging of other organs has not been documented. In this study, we used a mouse model with deletion of an autophagy-essential gene Atg7 in hematopoietic system to evaluate the intrinsic role of hematopoietic autophagy on the aging of non-hematopoietic organs. We found that autophagy defect in hematopoietic system causes growth retardation and shortened lifespan, along with aging-like phenotypes including hypertrophic heart, lung and spleen, but atrophic thymus and reduced bone mineral density at organismal level. Hematopoietic autophagy defect also causes increased oxidative stress and mitochondrial mass or aging gene expression at cellular level in multiple non-hematopoietic organs. The organ aging in the Atg7-deleted mice was reversed by anatomic connection to wild-type mice with intact blood autophagy via parabiosis, but not by injection of blood cell-free plasma. Our finding thus highlights an essential role of hematopoietic autophagy for decelerating aging in non-hematopoietic organs.
机译:自噬已经在调节衰老方面进行了很好的研究。但是,自噬在一个器官中对其他器官衰老的影响尚未被证实。在这项研究中,我们使用了在造血系统中缺失了自噬必需基因Atg7的小鼠模型来评估造血自噬在非造血器官衰老中的内在作用。我们发现,造血系统中的自噬缺陷会导致生长迟缓和寿命缩短,以及衰老样表型,包括肥厚的心脏,肺和脾脏,但萎缩性胸腺和机体水平的骨矿物质密度降低。造血自噬缺陷还在多个非造血器官的细胞水平上引起氧化应激和线粒体质量增加或基因表达老化。通过解剖连接到具有完整生物自噬作用的野生型小鼠(通过共生作用)可以逆转Atg7缺失小鼠的器官衰老,但不能注射无血细胞的血浆。因此,我们的发现突显了造血自噬对于加速非造血器官衰老的重要作用。

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