Long noncoding RNA ZBTB40-IT1 regulates bone mass by directing the differentiation of human bone marrow mesenchymal stromal cells via the microRNA-514a-3p/FOXO4 axis.

IF 3.1 3区 生物学 Human Cell Pub Date : 2022-09-01 Epub Date: 2022-06-09 DOI:10.1007/s13577-022-00730-4
Zhe Shi, Qiang Zhong, Yuhang Chen, Xin Luo
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Abstract

This study intended to clarify the mechanism of long noncoding RNA ZBTB40-IT1 in directing human bone marrow-derived mesenchymal stromal cell (hBMSC) differentiation. hBMSCs underwent osteogenic and adipogenic induction, and an osteoporosis mouse model was established via ovariectomy (OVX). Gain- and loss-of-function approaches were utilized in hBMSCs and mice to investigate the function of ZBTB40-IT1, microRNA (miR)-514a-3p, and forkhead box O4 (FOXO4). Dual-luciferase reporter and RNA pulldown assays were applied to evaluate the binding of miR-514a-3p to ZBTB40-IT1 or FOXO4. The femur of the OVX mice had upregulated ZBTB40-IT1 and FOXO4 expression and downregulated miR-514a-3p expression. The bone mass was increased in OVX mice through ZBTB40-IT1 or FOXO4 knockdown. ZBTB40-IT1 and FOXO4 were downregulated, whereas miR-514a-3p was upregulated in osteogenesis-induced hBMSCs, which was the opposite in adipogenesis-induced hBMSCs. ZBTB40-IT1 or FOXO4 knockdown or miR-514a-3p overexpression increased ARS/ALP absorbance and RUNX2 and OCN levels but decreased fat density and PPARγ and FABP4 levels in hBMSCs. Mechanistically, ZBTB40-IT1 elevated FOXO4 expression by binding to miR-514a-3p. miR-514a-3p inhibition annulled the effects of ZBTB40-IT1 downregulation on hBMSC osteogenesis and adipogenesis, and FOXO4 overexpression abolished the impacts of miR-514a-3p upregulation on hBMSC osteogenesis and adipogenesis. Conclusively, ZBTB40-IT1 inhibition promotes the osteogenic differentiation of hBMSCs via the miR-514a-3p/FOXO4 axis, thereby increasing bone mass.

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长链非编码RNA ZBTB40-IT1通过microRNA-514a-3p/FOXO4轴调控人骨髓间充质间质细胞的分化,从而调控骨量
本研究旨在阐明长链非编码RNA ZBTB40-IT1在指导人骨髓间充质基质细胞(hBMSC)分化中的作用机制。hBMSCs进行成骨和脂肪诱导,并通过卵巢切除术(OVX)建立骨质疏松小鼠模型。在hBMSCs和小鼠中采用功能获得和功能丧失方法来研究ZBTB40-IT1、microRNA (miR)-514a-3p和叉头盒O4 (FOXO4)的功能。采用双荧光素酶报告基因法和RNA下拉法评估miR-514a-3p与ZBTB40-IT1或FOXO4的结合。OVX小鼠股骨ZBTB40-IT1和FOXO4表达上调,miR-514a-3p表达下调。通过敲除ZBTB40-IT1或FOXO4, OVX小鼠骨量增加。ZBTB40-IT1和FOXO4下调,而miR-514a-3p在成骨诱导的hBMSCs中上调,而在脂肪诱导的hBMSCs中则相反。ZBTB40-IT1或FOXO4敲低或miR-514a-3p过表达增加了hBMSCs中ARS/ALP吸光率、RUNX2和OCN水平,但降低了脂肪密度、PPARγ和FABP4水平。机制上,ZBTB40-IT1通过结合miR-514a-3p提高FOXO4的表达。miR-514a-3p抑制可消除ZBTB40-IT1下调对hBMSC成骨和脂肪形成的影响,FOXO4过表达可消除miR-514a-3p上调对hBMSC成骨和脂肪形成的影响。最后,ZBTB40-IT1抑制通过miR-514a-3p/FOXO4轴促进hBMSCs的成骨分化,从而增加骨量。
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来源期刊
Human Cell
Human Cell 生物-细胞生物学
CiteScore
6.60
自引率
2.30%
发文量
176
期刊介绍: Human Cell is the official English-language journal of the Japan Human Cell Society. The journal serves as a forum for international research on all aspects of the human cell, encompassing not only cell biology but also pathology, cytology, and oncology, including clinical oncology. Embryonic stem cells derived from animals, regenerative medicine using animal cells, and experimental animal models with implications for human diseases are covered as well. Submissions in any of the following categories will be considered: Research Articles, Cell Lines, Rapid Communications, Reviews, and Letters to the Editor. A brief clinical case report focusing on cellular responses to pathological insults in human studies may also be submitted as a Letter to the Editor in a concise and short format. Not only basic scientists but also gynecologists, oncologists, and other clinical scientists are welcome to submit work expressing new ideas or research using human cells.
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