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NSD2 通过激活骨髓间充质干细胞中的 HOXA2 加剧骨质疏松症。

NSD2-mediated H3K36me2 exacerbates osteoporosis via activation of hoxa2 in bone marrow mesenchymal stem cells.

机构信息

Department of Orthopedics, Second Hospital of Shanxi Medical University, Shanxi, Taiyuan, PR China.

School of Medical Sciences, Shanxi Medical University, Shanxi, Taiyuan, PR China.

出版信息

Cell Signal. 2024 Sep;121:111294. doi: 10.1016/j.cellsig.2024.111294. Epub 2024 Jul 10.

Abstract

BACKGROUND

Osteoporosis (OP) is a prevalent disease associated with age, and one of the primary pathologies is the defect of osteogenic differentiation of bone marrow mesenchymal stem cells (BMSCs). This study aimed to elucidate whether Nuclear Receptor Binding SET Domain Protein 2 (NSD2) transcriptionally regulates osteogenic differentiation of BMSCs in osteoporosis.

METHODS

Identification of human BMSCs (hBMSCs) in vitro was measured by flow cytometry. Osteogenesis of hBMSCs in vitro was measured by Alizarin Red and Alkaline Phosphatase staining. The protein levels of H3K36me1/2/3, NSD2, and Hoxa2 were measured by western blotting. The mRNA levels of NSD2, Runx2, and BSP were measured by qPCR. The role of NSD2 in the osteogenic differentiation of BMSCs was further identified by silencing NSD2 via shRNA or overexpression of NSD2 via lentivirus transfection. The interactions of NSD2, H3K36me2 and Hoxa2 were identified via chromatin immunoprecipitation (ChIP). Luciferase reporting analysis was employed to confirm that NSD2 regulated the transcriptional activity of Hoxa2. Ovariectomized (OVX) was performed on mice to construct osteoporosis (OP) model. Subsequently, the bone mass was assessed by micro computed tomography (micro-CT) scan.

RESULTS

During the osteogenesis of OP-derived hBMSCs, the levels of NSD2 and H3K36me2 significantly increased in 14 days of osteogenic induction. Inhibition of NSD2 via shRNA increased the RUNX2 and BSP expression of hBMSCs, while overexpression of NSD2 decreased RUNX2 and BSP expression of hBMSCs. ChIP analysis indicated NSD2-mediated H3K36me2 reduced the osteogenic differentiation of hBMSCs by regulating the osteogenic inhibitor Hoxa2. Accordingly, inhibition of NSD2 in vivo via tail vein injection of LV-shNSD2 lentivirus greatly alleviated OVX-induced osteoporosis in mice.

CONCLUSION

We demonstrated that NSD2 inhibited the osteogenic differentiation in hBMSCs by transcriptionally downregulating Hoxa2 via H3K36me2 dimethylation. Inhibition of NSD2 effectively attenuated bone loss in murine osteoporosis and NSD2 is a promising target for clinical treatment of osteoporosis.

摘要

背景

骨质疏松症(OP)是一种与年龄相关的常见疾病,其主要病理学之一是骨髓间充质干细胞(BMSCs)成骨分化缺陷。本研究旨在阐明核受体结合 SET 域蛋白 2(NSD2)是否转录调控骨质疏松症中 BMSCs 的成骨分化。

方法

通过流式细胞术体外鉴定人 BMSCs(hBMSCs)。通过茜素红和碱性磷酸酶染色体外鉴定 hBMSCs 的成骨作用。通过 Western blot 测定 H3K36me1/2/3、NSD2 和 Hoxa2 的蛋白水平。通过 qPCR 测定 NSD2、Runx2 和 BSP 的 mRNA 水平。通过 shRNA 沉默 NSD2 或通过慢病毒转染过表达 NSD2 进一步鉴定 NSD2 在 BMSCs 成骨分化中的作用。通过染色质免疫沉淀(ChIP)鉴定 NSD2、H3K36me2 和 Hoxa2 的相互作用。采用荧光素酶报告分析证实 NSD2 调节 Hoxa2 的转录活性。对小鼠进行卵巢切除术(OVX)构建骨质疏松症(OP)模型。随后,通过微计算机断层扫描(micro-CT)扫描评估骨量。

结果

在 OP 来源的 hBMSCs 的成骨过程中,在成骨诱导的第 14 天,NSD2 和 H3K36me2 的水平显著增加。通过 shRNA 抑制 NSD2 增加了 hBMSCs 的 RUNX2 和 BSP 表达,而过表达 NSD2 则降低了 hBMSCs 的 RUNX2 和 BSP 表达。ChIP 分析表明,NSD2 介导的 H3K36me2 通过调节成骨抑制剂 Hoxa2 降低了 hBMSCs 的成骨分化。因此,通过尾静脉注射 LV-shNSD2 慢病毒体内抑制 NSD2 极大地缓解了小鼠 OVX 诱导的骨质疏松症。

结论

我们证明 NSD2 通过 H3K36me2 二甲基化转录下调 Hoxa2 抑制 hBMSCs 的成骨分化。抑制 NSD2 有效减轻了小鼠骨质疏松症中的骨丢失,NSD2 是骨质疏松症临床治疗的有希望的靶点。

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