hsa_circ_0004276 inhibits osteogenic differentiation of bone marrow mesenchymal stem cells and exacerbates postmenopausal osteoporosis through interaction with ELAVL1

Authors

  • BaiQuan Fu Chifeng Municipal Hospital, Chifeng City, Inner Mongolia Autonomous Region, China
  • YuXin Sui Chifeng Municipal Hospital, Chifeng City, Inner Mongolia Autonomous Region, China
  • Yu Liu Chifeng Municipal Hospital, Chifeng City, Inner Mongolia Autonomous Region, China
  • XiaoTian Yang Chifeng Municipal Hospital, Chifeng City, Inner Mongolia Autonomous Region, China
  • Hui Leng Chifeng Municipal Hospital, Chifeng City, Inner Mongolia Autonomous Region, China

DOI:

https://doi.org/10.1590/

Keywords:

hsa_circ_0004276, Postmenopausal osteoporosis, ELAVL1, Osteogenic differentiation, RNA-binding protein

Abstract

Objective  The aim of this study was to investigate the potential of hsa_circ_0004276 as a diagnostic marker for Postmenopausal Osteoporosis (PMO) and its potential interaction with the RNA-binding protein ELAV-like RNA binding protein-1 (ELAVL1).

Methods  The circRNA expression profiles obtained from the GSE159121 dataset were used to screen for differentially expressed circRNAs in patients with PMO. hsa_circ_0004276 was further analyzed and validated for its circular structure using a bioinformatics website, actinomycin D, and RNase R assays. Serum samples from 115 PMO patients and 103 healthy controls were collected. RT-qPCR and western blot were applied to assess hsa_circ_0004276 and ELAVL1. The effects of hsa_circ_0004276 and ELAVL1 on osteogenic differentiation of human Bone Marrow Mesenchymal Stem Cells (BMSCs) were investigated by in vitro experiments.

Results  hsa_circ_0004276 was highly expressed in PMO patients and negatively correlated with low bone mineral density. hsa_circ_0004276 had high specificity and sensitivity for the diagnosis of PMO. hsa_circ_0004276 significantly interacted with ELAVL1. During BMSC osteogenic differentiation, hsa_circ_0004276 knockdown significantly increased calcium deposition and ALP activity, while hsa_circ_0004276 overexpression showed the opposite effect. In addition, ELAVL1 expression was reduced in PMO patients and positively correlated with hsa_circ_0004276.

Conclusion  hsa_circ_0004276 regulates osteogenic differentiation of BMSCs through its interaction with ELAVL1 in PMO pathogenesis. This finding provides a new perspective for the study of the molecular mechanism of PMO and a theoretical basis for the development of new therapeutic targets.

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Author Biographies

  • BaiQuan Fu, Chifeng Municipal Hospital, Chifeng City, Inner Mongolia Autonomous Region, China

    Designed the research study · performed the research · wrote the manuscript · editorial changes in the manuscript · read · approved the final manuscript

  • YuXin Sui, Chifeng Municipal Hospital, Chifeng City, Inner Mongolia Autonomous Region, China

    Performed the research · editorial changes in the manuscript · read · approved the final manuscript

  • Yu Liu, Chifeng Municipal Hospital, Chifeng City, Inner Mongolia Autonomous Region, China

    Provided help · advice · analyzed the data · editorial changes in the manuscript · read · approved the final manuscript

  • XiaoTian Yang, Chifeng Municipal Hospital, Chifeng City, Inner Mongolia Autonomous Region, China

    Provided help · advice · analyzed the data · editorial changes in the manuscript · read · approved the final manuscript

  • Hui Leng, Chifeng Municipal Hospital, Chifeng City, Inner Mongolia Autonomous Region, China

    Analyzed the data · reviewed · edited the manuscript · editorial changes in the manuscript · read · approved the final manuscript

References

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Published

2025-01-27

Issue

Section

Original Articles

How to Cite

Fu, B., Sui, Y., Liu, Y., Yang, X., & Leng, H. (2025). hsa_circ_0004276 inhibits osteogenic differentiation of bone marrow mesenchymal stem cells and exacerbates postmenopausal osteoporosis through interaction with ELAVL1. Clinics, 80, 100718. https://doi.org/10.1590/