4.5 Article

Quantitative Proteomics Reveals That ADAM15 Can Have Proteolytic-Independent Functions in the Steady State

期刊

MEMBRANES
卷 12, 期 6, 页码 -

出版社

MDPI
DOI: 10.3390/membranes12060578

关键词

metalloproteinases; ADAMs; ADAM15; proteomics; secretome

资金

  1. Kennedy Trust for Rheumatology Research
  2. Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) [EXC 2145, 390857198]
  3. Fondazione con il Sud [2018-PDR-00799]

向作者/读者索取更多资源

ADAM15, a member of the ADAM family, plays an important role in various biological functions, particularly in cartilage homeostasis. Proteomic analysis of HTB94 cells manipulated to have altered ADAM15 expression levels showed that ADAM15 can modulate the secretome independent of its catalytic activity, notably increasing levels of TIMP-3. This suggests a novel mechanism by which ADAM15 exerts its biological functions beyond canonical substrate cleavage.
A disintegrin and metalloproteinase 15 (ADAM15) is a member of the ADAM family of sheddases. Its genetic ablation in mice suggests that ADAM15 plays an important role in a wide variety of biological functions, including cartilage homeostasis. Nevertheless, while the substrate repertoire of other members of the ADAM family, including ADAM10 and ADAM17, is largely established, little is known about the substrates of ADAM15 and how it exerts its biological functions. Herein, we used unbiased proteomics to identify ADAM15 substrates and proteins regulated by the proteinase in chondrocyte-like HTB94 cells. ADAM15 silencing did not induce major changes in the secretome composition of HTB94 cells, as revealed by two different proteomic approaches. Conversely, overexpression of ADAM15 remodeled the secretome, with levels of several secreted proteins being altered compared to GFP-overexpressing controls. However, the analysis did not identify potential substrates of the sheddase, i.e., transmembrane proteins released by ADAM15 in the extracellular milieu. Intriguingly, secretome analysis and immunoblotting demonstrated that ADAM15 overexpression increased secreted levels of tissue inhibitor of metalloproteinases 3 (TIMP-3), a major regulator of extracellular matrix turnover. An inactive form of ADAM15 led to a similar increase in the inhibitor, indicating that ADAM15 regulates TIMP-3 secretion by an unknown mechanism independent of its catalytic activity. In conclusion, high-resolution quantitative proteomics of HTB94 cells manipulated to have increased or decreased ADAM15 expression did not identify canonical substrates of the proteinase in the steady state, but it revealed that ADAM15 can modulate the secretome in a catalytically-independent manner.

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