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P62缺乏使老年小鼠间充质/基质干细胞向脂肪生成方向分化,并破坏骨髓稳态。

P62 deficiency shifts mesenchymal/stromal stem cell commitment toward adipogenesis and disrupts bone marrow homeostasis in aged mice.

作者信息

Lacava Giovanna, Laus Fulvio, Amaroli Andrea, Marchegiani Andrea, Censi Roberta, Di Martino Piera, Yanagawa Toru, Sabbieti Maria Giovanna, Agas Dimitrios

机构信息

School of Biosciences and Veterinary Medicine, University of Camerino, Camerino, Italy.

Department of Surgical and Diagnostic Sciences, University of Genova, Genova, Italy.

出版信息

J Cell Physiol. 2019 Sep;234(9):16338-16347. doi: 10.1002/jcp.28299. Epub 2019 Feb 10.

Abstract

With advancing age have been observed bone and bone marrow phenotypic alterations due to the impaired bone tissue homeostatic features, involving bone remodeling, and bone marrow niche ontogeny. The complex "inflamm-aging" pathological scenario that culminates with osteopenia and mesenchymal/stromal and hematopoietic stem cell commitment breakdown, is controlled by cellular and molecular intramural components comprising adapter proteins such as the sequestosome 1 (p62/SQSTM1). p62, a "multiway function" protein, has been reported as an effective anti-inflammatory, bone-building factor. In this view, we considered for the first time the involvement of p62 in aging bone and bone marrow of 1 year and 2 years p62 mice. Interestingly, p62 deficiency provoked accelerated osteopenia and impaired niche operational activities within the bone marrow. The above findings unearthed the importance of p62 in mesenchymal stem cell maintenance/differentiation schedule in old animals and provide, at least in part, a mechanistic scenario of p62 action.

摘要

随着年龄的增长,由于骨组织稳态特征受损,包括骨重塑和骨髓微环境发生,已观察到骨骼和骨髓的表型改变。复杂的“炎症衰老”病理情况最终导致骨质减少以及间充质/基质和造血干细胞定向分化障碍,这由包括衔接蛋白如聚集体蛋白1(p62/SQSTM1)在内的细胞和分子壁内成分控制。p62是一种“多功能”蛋白,已被报道为一种有效的抗炎、成骨因子。鉴于此,我们首次考虑了p62在1岁和2岁p62基因敲除小鼠的衰老骨骼和骨髓中的作用。有趣的是,p62缺乏会导致骨质减少加速,并损害骨髓内的微环境活动。上述发现揭示了p62在老年动物间充质干细胞维持/分化进程中的重要性,并至少部分地提供了p62作用的机制情况。

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