Advanced Centre for Treatment, Research and Education in Cancer, Tata Memorial Centre, Kharghar, Navi Mumbai 410210, India.
Biochem J. 2012 Oct 1;447(1):61-70. doi: 10.1042/BJ20111432.
Accurate identification of substrates of a protease is critical in defining its physiological functions. We previously predicted that Dsg-2 (desmoglein-2), a desmosomal protein, is a candidate substrate of the transmembrane serine protease matriptase. The present study is an experimental validation of this prediction. As demanded by our published method PNSAS [Prediction of Natural Substrates from Artificial Substrate of Proteases; Venkatraman, Balakrishnan, Rao, Hooda and Pol (2009) PLoS ONE 4, e5700], this enzyme-substrate pair shares a common subcellular distribution and the predicted cleavage site is accessible to the protease. Matriptase knock-down cells showed enhanced immunoreactive Dsg-2 at the cell surface and formed larger cell clusters. When matriptase was mobilized from intracellular storage deposits to the cell surface there was a decrease in the band intensity of Dsg-2 in the plasma membrane fractions with a concomitant accumulation of a cleaved product in the conditioned medium. The exogenous addition of pure active recombinant matriptase decreased the surface levels of immunoreactive Dsg-2, whereas the levels of CD44 and E-cadherin were unaltered. Dsg-2 with a mutation at the predicted cleavage site is resistant to cleavage by matriptase. Thus Dsg-2 seems to be a functionally relevant physiological substrate of matriptase. Since breakdown of cell-cell contact is the first major event in invasion, this reciprocal relationship is likely to have a profound role in cancers of epithelial origin. Our algorithm has the potential to become an integral tool for discovering new protease-substrate pairs.
准确鉴定蛋白酶的底物对于确定其生理功能至关重要。我们之前预测桥粒蛋白 Dsg-2(桥粒芯糖蛋白 2)是跨膜丝氨酸蛋白酶 matriptase 的候选底物。本研究对这一预测进行了实验验证。根据我们之前发表的方法 PNSAS(蛋白酶天然底物的预测;Venkatraman、Balakrishnan、Rao、Hooda 和 Pol(2009)PLoS ONE 4,e5700)的要求,该酶-底物对具有共同的亚细胞分布,且预测的切割位点对蛋白酶是可及的。matriptase 敲低细胞的细胞表面免疫反应性 Dsg-2 增强,并形成更大的细胞簇。当 matriptase 从细胞内储存库转移到细胞表面时,质膜部分的 Dsg-2 条带强度降低,同时在条件培养基中积累了一个切割产物。纯活性重组 matriptase 的外源性添加降低了细胞表面免疫反应性 Dsg-2 的水平,而 CD44 和 E-钙黏蛋白的水平则没有改变。在预测的切割位点发生突变的 Dsg-2 对 matriptase 的切割具有抗性。因此,Dsg-2 似乎是 matriptase 的一种功能相关的生理底物。由于细胞间接触的破坏是侵袭的第一个主要事件,这种相互关系很可能在上皮来源的癌症中发挥深远的作用。我们的算法有可能成为发现新的蛋白酶-底物对的重要工具。