Proteomics Group of Fondazione Ri.MED, Department of Research IRCCS ISMETT, via Ernesto Tricomi 5, 90145 Palermo, Italy.
Division of Gene Regulation and Expression, School of Life Sciences, University of Dundee, Dundee DD1 5EH, UK.
Int J Mol Sci. 2021 Feb 27;22(5):2392. doi: 10.3390/ijms22052392.
Ectodomain shedding is a key mechanism of several biological processes, including cell-communication. Disintegrin and metalloproteinases (ADAMs), together with the membrane-type matrix metalloproteinases, play a pivotal role in shedding transmembrane proteins. Aberrant shedding is associated to several pathological conditions, including arthritis. Tissue inhibitor of metalloproteases 3 (TIMP-3), an endogenous inhibitor of ADAMs and matrix metalloproteases (MMPs), has been proven to be beneficial in such diseases. Thus, strategies to increase TIMP-3 bioavailability in the tissue have been sought for development of therapeutics. Nevertheless, high levels of TIMP-3 may lead to mechanism-based side-effects, as its overall effects on cell behavior are still unknown. In this study, we used a high-resolution mass-spectrometry-based workflow to analyze alterations induced by sustained expression of TIMP-3 in the cell surfaceome. In agreement with its multifunctional properties, TIMP-3 induced changes on the protein composition of the cell surface. We found that TIMP-3 had differential effects on metalloproteinase substrates, with several that accumulated in TIMP-3-overexpressing cells. In addition, our study identified potentially novel ADAM substrates, including ADAM15, whose levels at the cell surface are regulated by the inhibitor. In conclusion, our study reveals that high levels of TIMP-3 induce modifications in the cell surfaceome and identifies molecular pathways that can be deregulated via TIMP-3-based therapies.
细胞外结构域脱落是包括细胞通讯在内的几种生物学过程的关键机制。解整合素和金属蛋白酶(ADAMs)与膜型基质金属蛋白酶一起,在脱落跨膜蛋白中发挥关键作用。异常脱落与几种病理状况有关,包括关节炎。组织金属蛋白酶抑制剂 3(TIMP-3)是 ADAMs 和基质金属蛋白酶(MMPs)的内源性抑制剂,已被证明在这些疾病中是有益的。因此,人们一直在寻求增加组织中 TIMP-3 生物利用度的策略,以开发治疗方法。然而,高水平的 TIMP-3 可能导致基于机制的副作用,因为其对细胞行为的总体影响尚不清楚。在这项研究中,我们使用基于高分辨率质谱的工作流程来分析持续表达 TIMP-3 对细胞表面组学诱导的改变。与它的多功能特性一致,TIMP-3 改变了细胞表面的蛋白质组成。我们发现 TIMP-3 对金属蛋白酶底物有不同的影响,其中一些在 TIMP-3 过表达细胞中积累。此外,我们的研究确定了潜在的新型 ADAM 底物,包括 ADAM15,其在细胞表面的水平受抑制剂调节。总之,我们的研究表明,高水平的 TIMP-3 会引起细胞表面组学的改变,并确定了可以通过基于 TIMP-3 的治疗来调节的分子途径。