多胞嘧啶 RNA 结合蛋白 1 通过铁氧化途径调节 2 型糖尿病骨质疏松症的成骨细胞功能

Hongdong Ma, Lei Shi, Haitian Li, Xin-Dong Wang, Maowei Yang
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摘要

背景 近年来,2 型糖尿病骨质疏松症(T2DOP)已成为糖尿病并发症的研究热点,但其发生和发展的具体机制仍不清楚。铁超载引起的铁沉积症被认为是导致 T2DOP 的重要原因。多胞嘧啶 RNA 结合蛋白 1(PCBP1)是一种铁离子伴侣蛋白,被认为是铁变态反应的保护者。目的 探讨 2 型糖尿病发病过程中是否存在铁变态反应以及 PCBP1 的特殊作用。方法 使用细胞计数试剂盒-8 检测在不同浓度和时间的高糖(HG)和/或铁蛋白沉积抑制剂作用下成骨细胞活力的变化。透射电子显微镜检查了 HG 条件下成骨细胞线粒体的形态变化,Western 印迹检测了 PCBP1、铁蛋白和铁氧化相关蛋白谷胱甘肽过氧化物酶 4(GPX4)的表达水平。慢病毒沉默和过表达 PCBP1。用 Western 印迹法检测成骨细胞功能蛋白骨保护蛋白(OPG)和骨钙素(OCN)的表达水平,用流式细胞术检测各组活性氧(ROS)水平的变化。结果 在 HG 作用下,成骨细胞的活力显著下降,线粒体萎缩的数量显著增加,PCBP1 和铁蛋白的表达水平升高,GPX4 的表达下降。Western blotting 结果表明,与 HG 组相比,感染过表达 PCBP1 的慢病毒会增加铁蛋白、GPX4、OPG 和 OCN 的表达水平。流式细胞术结果显示,ROS 减少,而沉默 PCBP1 后的结果恰恰相反。结论 PCBP1 可在 HG 环境下促进铁蛋白的表达,从而保护成骨细胞并减少铁蛋白沉积造成的伤害。此外,PCBP1 可能是 T2DOP 的潜在治疗靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Polycytosine RNA-binding protein 1 regulates osteoblast function via a ferroptosis pathway in type 2 diabetic osteoporosis
BACKGROUND Recently, type 2 diabetic osteoporosis (T2DOP) has become a research hotspot for the complications of diabetes, but the specific mechanism of its occurrence and development remains unknown. Ferroptosis caused by iron overload is con-sidered an important cause of T2DOP. Polycytosine RNA-binding protein 1 (PCBP1), an iron ion chaperone, is considered a protector of ferroptosis. AIM To investigate the existence of ferroptosis and specific role of PCBP1 in the development of type 2 diabetes. METHODS A cell counting kit-8 assay was used to detect changes in osteoblast viability under high glucose (HG) and/or ferroptosis inhibitors at different concentrations and times. Transmission electron microscopy was used to examine the morphological changes in the mitochondria of osteoblasts under HG, and western blotting was used to detect the expression levels of PCBP1, ferritin, and the ferroptosis-related protein glutathione peroxidase 4 (GPX4). A lentivirus silenced and overexpressed PCBP1. Western blotting was used to detect the expression levels of the osteoblast functional proteins osteoprotegerin (OPG) and osteocalcin (OCN), whereas flow cytometry was used to detect changes in reactive oxygen species (ROS) levels in each group. RESULTS Under HG, the viability of osteoblasts was considerably decreased, the number of mitochondria undergoing atrophy was considerably increased, PCBP1 and ferritin expression levels were increased, and GPX4 expression was decreased. Western blotting results demonstrated that infection with lentivirus overexpressing PCBP1, increased the expression levels of ferritin, GPX4, OPG, and OCN, compared with the HG group. Flow cytometry results showed a reduction in ROS, and an opposite result was obtained after silencing PCBP1. CONCLUSION PCBP1 may protect osteoblasts and reduce the harm caused by ferroptosis by promoting ferritin expression under a HG environment. Moreover, PCBP1 may be a potential therapeutic target for T2DOP.
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