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性激素结合球蛋白 (SHBG) 调节 PPARγ 耗竭的马脂肪基质细胞中线粒体动力学。

Sex hormone binding globulin (SHBG) modulates mitochondrial dynamics in PPARγ-depleted equine adipose derived stromal cells.

机构信息

Department of Experimental Biology, Faculty of Biology and Animal Science, Wrocław University of Environmental and Life Sciences, Norwida 27B, 50-375, Wrocław, Poland.

International Institute of Translational Medicine, Jesionowa 11, Malin, 55-114, Wisznia Mała, Poland.

出版信息

J Mol Med (Berl). 2024 Aug;102(8):1015-1036. doi: 10.1007/s00109-024-02459-z. Epub 2024 Jun 14.

Abstract

Peroxisome proliferator-activated receptor gamma (PPARγ) is a transcription factor that promotes adipogenesis, lipid uptake and storage, insulin sensitivity, and glucose metabolism. Hence, defects in PPARγ have been associated to the development of metabolic disorders. Sex hormone-binding globulin (SHBG) is a glycoprotein primarily produced in the liver that regulates the bioavailability of sex hormones. Alike PPARγ, low SHBG levels have been correlated with insulin resistance and associated endocrine abnormalities. Therefore, this study aimed to verify whether SHBG may restore depleted PPARγ functions and thus serve as a new candidate for the management of metabolic conditions. A model of equine adipose-derived stromal cells (EqASCs) has been used, in which a PPARγ silencing and SHBG treatment have been achieved to determine the changes in cell viability, premature senescence, oxidative stress, and mitochondrial functions. Obtained data demonstrated that loss in PPARγ triggers cell apoptosis which is not reversed by SHBG application. Moreover, PPARγ knockdown cells exhibited premature senescence, which has been substantially alleviated by SHBG concomitantly to increased BAX/BCL2 ratio, suggesting a possible effect on senescence-induced apoptosis resistance. Interestingly, PPARγ silencing induced a significant alteration in mitochondrial membrane potential as well as the expression of dynamics and metabolism-related markers. SHBG treatment enabled to ameliorate the transmembrane potential, to normalize the expression levels of key dynamics and metabolism mediators, and to restore the protein levels of PINK, which is critically involved in mitochondria recycling machinery. Presented data suggest that SHBG may provide new mechanistic insights into the regulation of PPARγ functions, and thus offers a preliminary picture on a possible SHBG-PPARγ metabolic crosstalk. KEY MESSAGES : PPARγ is a transcription factor that tightly regulates cell metabolism. Low SHBG levels correlate with insulin resistance and associated endocrine abnormalities. PPARγ silencing reduces cell viability, triggers premature senescence and profound mitochondrial failure in equine ASCs. SHBG protein reverses senescent phenotype and apoptosis resistance of PPARγ- ASCs. SHBG improves mitochondrial dynamics and metabolism following PPARγ knockdown. SHBG might serve as a PPARγ potential mimicking agent for the modulation of ASCs metabolic processes.

摘要

过氧化物酶体增殖物激活受体 γ(PPARγ)是一种转录因子,可促进脂肪生成、脂质摄取和储存、胰岛素敏感性以及葡萄糖代谢。因此,PPARγ 的缺陷与代谢紊乱的发展有关。性激素结合球蛋白(SHBG)是一种主要在肝脏中产生的糖蛋白,可调节性激素的生物利用度。与 PPARγ 类似,低 SHBG 水平与胰岛素抵抗和相关的内分泌异常相关。因此,本研究旨在验证 SHBG 是否可以恢复耗尽的 PPARγ 功能,从而成为代谢状况管理的新候选物。本研究使用了马脂肪来源的基质细胞(EqASC)模型,其中实现了 PPARγ 沉默和 SHBG 处理,以确定细胞活力、过早衰老、氧化应激和线粒体功能的变化。获得的数据表明,PPARγ 的丧失会触发细胞凋亡,而 SHBG 的应用并不能逆转这种凋亡。此外,PPARγ 敲低细胞表现出过早衰老,而 SHBG 的应用则显著减轻了这种衰老,同时增加了 BAX/BCL2 比值,这表明可能对衰老诱导的凋亡抵抗有影响。有趣的是,PPARγ 沉默诱导了线粒体膜电位以及动力学和代谢相关标志物表达的显著改变。SHBG 处理能够改善跨膜电位,使关键动力学和代谢调节剂的表达水平正常化,并恢复 PINK 的蛋白水平,PINK 蛋白在参与线粒体再循环的机制中至关重要。目前的数据表明,SHBG 可能为 PPARγ 功能的调节提供新的机制见解,并为 SHBG-PPARγ 代谢相互作用提供初步认识。 关键信息: PPARγ 是一种转录因子,可紧密调节细胞代谢。低 SHBG 水平与胰岛素抵抗和相关的内分泌异常相关。 PPARγ 沉默降低了马 ASC 的细胞活力,触发了过早衰老和严重的线粒体衰竭。 SHBG 蛋白逆转了 PPARγ-ASC 的衰老表型和凋亡抵抗。 SHBG 改善了 PPARγ 敲低后的线粒体动力学和代谢。 SHBG 可能作为 PPARγ 的潜在模拟物,用于调节 ASC 的代谢过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab40/11269461/9e17b77d3e2b/109_2024_2459_Fig1_HTML.jpg

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