Genetic regulation of injury-induced heterotopic ossification in adult zebrafish

Author:

Kaliya-Perumal Arun-Kumar1ORCID,Celik Cenk2ORCID,Carney Tom J.13ORCID,Harris Matthew P.45ORCID,Ingham Philip W.16ORCID

Affiliation:

1. Lee Kong Chian School of Medicine, Nanyang Technological University 1 , 59 Nanyang Drive 636921 , Singapore

2. Genetics Institute, University College London 2 Department of Genetics, Evolution and Environment , , London WC1E 6BT , UK

3. Institute of Molecular and Cell Biology (IMCB) 3 , Agency for Science, Technology and Research (A*STAR), 61 Biopolis Drive, Proteos 138673 , Singapore

4. Harvard Medical School 4 Department of Genetics , , Boston, MA 02115 , USA

5. Boston Children's Hospital 5 Department of Orthopedic Research , , Boston, MA 02115 , USA

6. University of Bath 6 Department of Life Sciences , , Bath BA2 7AY , UK

Abstract

ABSTRACT Heterotopic ossification is the inappropriate formation of bone in soft tissues of the body. It can manifest spontaneously in rare genetic conditions or as a response to injury, known as acquired heterotopic ossification. There are several experimental models for studying acquired heterotopic ossification from different sources of damage. However, their tenuous mechanistic relevance to the human condition, invasive and laborious nature and/or lack of amenability to chemical and genetic screens, limit their utility. To address these limitations, we developed a simple zebrafish injury model that manifests heterotopic ossification with high penetrance in response to clinically emulating injuries, as observed in human myositis ossificans traumatica. Using this model, we defined the transcriptional response to trauma, identifying differentially regulated genes. Mutant analyses revealed that an increase in the activity of the potassium channel Kcnk5b potentiates injury response, whereas loss of function of the interleukin 11 receptor paralogue (Il11ra) resulted in a drastically reduced ossification response. Based on these findings, we postulate that enhanced ionic signalling, specifically through Kcnk5b, regulates the intensity of the skeletogenic injury response, which, in part, requires immune response regulated by Il11ra.

Funder

Toh Kian Chui Foundation

Lee Kong Chian School of Medicine, Nanyang Technological University

University of Bath

Publisher

The Company of Biologists

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. First person – Arun-Kumar Kaliya-Perumal;Disease Models & Mechanisms;2024-05-01

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