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Peer-reviewed veterinary case report

Combined ADAMTS10 and ADAMTS17 inactivation exacerbates bone shortening and skin phenotypes.

Journal:
Life science alliance
Year:
2025
Authors:
Taye, Nandaraj et al.
Affiliation:
Leni and Peter W. May Department of Orthopedics · United States
Species:
rodent

Abstract

Weill-Marchesani syndrome (WMS) is characterized by severe short stature, joint contractures, tight skin, heart valve and eye anomalies. WMS is caused by biallelic mutations in,, or, or mono-allelic mutations inBecause bone growth is driven by chondrocyte proliferation and hypertrophy in the growth plates, the genetics of WMS suggests that the affected extracellular matrix (ECM) proteins contribute to chondrocyte and growth plate function. Here, we show that;double knockout (DKO) mice have significant postnatal lethality and exacerbated bone shortening, which correlated with a narrower hypertrophic zone in their growth plates. Potential ADAMTS17 substrates identified by N-terminomics and yeast-2-hybrid screening revealed the ECM proteins fibronectin () and collagen VI (). In primary ADAMTS10- and ADAMTS17-deficient skin fibroblasts, fibronectin deposition was impaired concomitant with aberrant intracellular accumulation of fibrillin-1. These findings support a role for ADAMTS17 in ECM protein secretion and assembly. Mechanistically, ADAMTS17 appears to be a critical regulator of ECM protein secretion or pericellular matrix assembly, whereas ADAMTS10 likely modulates ECM formation at later stages.

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Original publication: https://pubmed.ncbi.nlm.nih.gov/41034152/