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自噬参与人骨髓间充质干细胞中I型神经纤维瘤病基因调控的成骨分化过程。

Autophagy is involved in neurofibromatosis type I gene-modulated osteogenic differentiation in human bone mesenchymal stem cells.

作者信息

Li Yiqiang, Zhu Mingwei, Lin Xuemei, Li Jingchun, Yuan Zhe, Liu Yanhan, Xu Hongwen

机构信息

Department of Pediatric Orthopedics, Guangzhou Women and Children's Medical Center, Guangzhou Medical University, Guangzhou, Guangdong 510623, P.R. China.

出版信息

Exp Ther Med. 2021 Nov;22(5):1262. doi: 10.3892/etm.2021.10697. Epub 2021 Sep 6.

Abstract

Neurofibromatosis type I (NF1) is an autosomal dominant genetic disease that is caused by mutations in the gene. Various studies have previously demonstrated that the mTOR complex 1 signaling pathway is essential for the -modulated osteogenic differentiation of bone mesenchymal stem cells (BMSCs). Additionally, the mTOR signaling pathway plays a notable role in autophagy. The present study hypothesized that could modulate the osteogenic differentiation of BMSCs by regulating the autophagic activities of BMSCs. In the present study, human BMSCs were cultured in an osteogenic induction medium. The expression of the gene was either knocked down or overexpressed by transfection with a specific small interfering RNA (siRNA) targeting or the pcDNA3.0 -overexpression plasmid, respectively. Autophagic activities of BMSCs (Beclin-1, P62, LC3B I, and LC3B II) were determined using western blotting, electron microscopy, acridine orange (AO) staining and autophagic flux/lysosomal detection by fluorescence microscopy. In addition, the autophagy activator rapamycin (RAPA) and inhibitor 3-methyladenine (3-MA) were used to investigate the effects of autophagy on -modulated osteogenic differentiation in BMSCs. Inhibiting with siRNA significantly decreased the expression levels of autophagy markers Beclin-1 and LC3B-II, in addition to osteogenic differentiation markers osterix, runt-related transcription factor 2 and alkaline phosphatase. By contrast, overexpressing with pcDNA3.0 significantly increased their levels. Transmission electron microscopy, AO staining and autophagic flux/lysosomal detection assays revealed that the extent of autophagosome formation was significantly decreased in the -siRNA group but significantly increased in the -pcDNA3.0 group when compared with the NC-siRNA and pcDNA3.0 groups, respectively. In addition, the activity of the PI3K/AKT/mTOR pathway [phosphorylated (p)-PI3K, p-AKT, p-mTOR and p-p70S6 kinase] was significantly upregulated in the -siRNA group compared with the NC-siRNA group, and significantly inhibited in the -pcDNA3.0 group, compared with the pcDNA3.0 group. The knockdown effects of -siRNA on the autophagy and osteogenic differentiation of BMSCs were reversed by the autophagy activator RAPA, while the overexpression effects of -pcDNA3.0 on the autophagy and osteogenic differentiation of BMSCs were reversed by the autophagy inhibitor 3-MA. In conclusion, results from the present study suggest at the involvement of autophagy in the -modulated osteogenic differentiation of BMSCs. Furthermore, may partially regulate the autophagic activity of BMSCs through the PI3K/AKT/mTOR signaling pathway.

摘要

I型神经纤维瘤病(NF1)是一种常染色体显性遗传病,由该基因的突变引起。先前的各种研究表明,mTOR复合物1信号通路对于骨间充质干细胞(BMSC)的-调节成骨分化至关重要。此外,mTOR信号通路在自噬中起着显著作用。本研究假设, 可以通过调节BMSC的自噬活性来调节BMSC的成骨分化。在本研究中,将人BMSC培养在成骨诱导培养基中。通过分别用靶向 的特异性小干扰RNA(siRNA)或pcDNA3.0-过表达质粒转染,使该基因的表达被敲低或过表达。使用蛋白质印迹法、电子显微镜、吖啶橙(AO)染色以及通过荧光显微镜进行自噬通量/溶酶体检测来测定BMSC的自噬活性(Beclin-1、P62、LC3B I和LC3B II)。此外,使用自噬激活剂雷帕霉素(RAPA)和抑制剂3-甲基腺嘌呤(3-MA)来研究自噬对BMSC中-调节的成骨分化的影响。用siRNA抑制 ,除了成骨分化标志物osterix、 runt相关转录因子2和碱性磷酸酶外,还显著降低了自噬标志物Beclin-1和LC3B-II的表达水平。相比之下,用pcDNA3.0过表达 显著增加了它们的水平。透射电子显微镜、AO染色和自噬通量/溶酶体检测试验表明,与NC-siRNA组和pcDNA3.0组相比, -siRNA组中自噬体形成的程度显著降低,而 -pcDNA3.0组中显著增加。此外,与NC-siRNA组相比, -siRNA组中PI3K/AKT/mTOR信号通路[磷酸化(p)-PI3K、p-AKT、p-mTOR和p-p70S6激酶]的活性显著上调,与pcDNA3.0组相比, -pcDNA3.0组中该信号通路被显著抑制。自噬激活剂RAPA逆转了 -siRNA对BMSC自噬和成骨分化的敲低作用,而自噬抑制剂3-MA逆转了 -pcDNA3.0对BMSC自噬和成骨分化的过表达作用。总之,本研究结果表明自噬参与了BMSC的-调节成骨分化。此外, 可能通过PI3K/AKT/mTOR信号通路部分调节BMSC的自噬活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3959/8453340/f7c181279e3e/etm-22-05-10697-g00.jpg

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