MicroRNA-138: an emerging regulator of skeletal development, homeostasis, and disease

Author:

Brito Victor Gustavo Balera1ORCID,Bell-Hensley Austin2ORCID,McAlinden Audrey134ORCID

Affiliation:

1. Department of Orthopaedic Surgery, Washington University School of Medicine, St. Louis, Missouri, United States

2. Department of Biomedical Engineering, Washington University School of Medicine, St. Louis, Missouri, United States

3. Department of Cell Biology & Physiology, Washington University School of Medicine, St. Louis, Missouri, United States

4. Shriners Hospital for Children, St. Louis, Missouri, United States

Abstract

Noncoding microRNAs are powerful epigenetic regulators of cellular processes by their ability to target and suppress expression of numerous protein-coding mRNAs. This multitargeting function is a unique and complex feature of microRNAs. It is now well-described that microRNAs play important roles in regulating the development and homeostasis of many cell/tissue types, including those that make up the skeletal system. In this review, we focus on microRNA-138 (miR-138) and its effects on regulating bone and cartilage cell differentiation and function. In addition to its reported role as a tumor suppressor, miR-138 appears to function as an inhibitor of osteoblast differentiation. This review provides additional information on studies that have attempted to alter miR-138 expression in vivo as a means to dampen ectopic calcification or alter bone mass. However, a review of the published literature on miR-138 in cartilage reveals a number of contradictory and inconclusive findings with respect to regulating chondrogenesis and chondrocyte catabolism. This highlights the need for more research in understanding the role of miR-138 in cartilage biology and disease. Interestingly, a number of studies in other systems have reported miR-138-mediated effects in dampening inflammation and pain responses. Future studies will reveal if a multifunctional role of miR-138 involving suppression of ectopic bone, inflammation, and pain will be beneficial in skeletal conditions such as osteoarthritis and heterotopic ossification.

Funder

HHS | NIH | National Institute of Arthritis and Musculoskeletal and Skin Diseases

Publisher

American Physiological Society

Subject

Cell Biology,Physiology

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