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通过核纤层蛋白 A/C 缺陷将骨骼肌衰老与骨质疏松症联系起来。

Linking skeletal muscle aging with osteoporosis by lamin A/C deficiency.

机构信息

Department of Neurosciences, School of Medicine, Case Western Reserve University, Cleveland, Ohio, United States of America.

Louis Stoke VA Medical Center, Cleveland, Ohio, United States of America.

出版信息

PLoS Biol. 2020 Jun 1;18(6):e3000731. doi: 10.1371/journal.pbio.3000731. eCollection 2020 Jun.

Abstract

The nuclear lamina protein lamin A/C is a key component of the nuclear envelope. Mutations in the lamin A/C gene (LMNA) are identified in patients with various types of laminopathy-containing diseases, which have features of accelerated aging and osteoporosis. However, the underlying mechanisms for laminopathy-associated osteoporosis remain largely unclear. Here, we provide evidence that loss of lamin A/C in skeletal muscles, but not osteoblast (OB)-lineage cells, results in not only muscle aging-like deficit but also trabecular bone loss, a feature of osteoporosis. The latter is due in large part to elevated bone resorption. Further cellular studies show an increase of osteoclast (OC) differentiation in cocultures of bone marrow macrophages/monocytes (BMMs) and OBs after treatment with the conditioned medium (CM) from lamin A/C-deficient muscle cells. Antibody array screening analysis of the CM proteins identifies interleukin (IL)-6, whose expression is markedly increased in lamin A/C-deficient muscles. Inhibition of IL-6 by its blocking antibody in BMM-OB cocultures diminishes the increase of osteoclastogenesis. Knockout (KO) of IL-6 in muscle lamin A/C-KO mice diminishes the deficits in trabecular bone mass but not muscle. Further mechanistic studies reveal an elevation of cellular senescence marked by senescence-associated beta-galactosidase (SA-β-gal), p16Ink4a, and p53 in lamin A/C-deficient muscles and C2C12 muscle cells, and the p16Ink4a may induce senescence-associated secretory phenotype (SASP) and IL-6 expression. Taken together, these results suggest a critical role for skeletal muscle lamin A/C to prevent cellular senescence, IL-6 expression, hyperosteoclastogenesis, and trabecular bone loss, uncovering a pathological mechanism underlying the link between muscle aging/senescence and osteoporosis.

摘要

核纤层蛋白 lamin A/C 是核膜的关键组成部分。在各种包含层粘连蛋白病的患者中发现了 lamin A/C 基因突变,这些疾病具有加速衰老和骨质疏松的特征。然而,层粘连蛋白病相关骨质疏松症的潜在机制在很大程度上仍不清楚。在这里,我们提供的证据表明,骨骼肌中 lamin A/C 的缺失,而不是成骨细胞 (OB) 谱系细胞的缺失,不仅导致肌肉老化样缺陷,还导致小梁骨丢失,这是骨质疏松症的一个特征。后者在很大程度上是由于骨吸收的增加。进一步的细胞研究表明,在用来自 lamin A/C 缺陷肌肉细胞的条件培养基 (CM) 处理后,骨髓巨噬细胞/单核细胞 (BMM) 和 OB 共培养物中的破骨细胞 (OC) 分化增加。CM 蛋白的抗体阵列筛选分析鉴定出白细胞介素 (IL)-6,其在 lamin A/C 缺陷肌肉中的表达明显增加。在 BMM-OB 共培养物中用其阻断抗体抑制 IL-6 可减少破骨细胞生成的增加。在肌肉 lamin A/C-KO 小鼠中敲除 IL-6 可减少小梁骨量的减少,但不能减少肌肉。进一步的机制研究表明,在 lamin A/C 缺陷肌肉和 C2C12 肌肉细胞中,细胞衰老明显升高,表现为衰老相关β-半乳糖苷酶 (SA-β-gal)、p16Ink4a 和 p53 的升高,而 p16Ink4a 可能诱导衰老相关分泌表型 (SASP) 和 IL-6 表达。总之,这些结果表明,骨骼肌 lamin A/C 在防止细胞衰老、IL-6 表达、破骨细胞过度生成和小梁骨丢失方面起着关键作用,揭示了肌肉衰老/衰老和骨质疏松症之间联系的病理机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9af/7310860/380a6e615d2d/pbio.3000731.g001.jpg

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