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从预测到实验验证:桥粒芯糖蛋白 2 是上皮细胞中组织蛋白酶 matriptase 的一个具有功能相关性的底物,它们之间的相互关系对于细胞黏附非常重要。

From prediction to experimental validation: desmoglein 2 is a functionally relevant substrate of matriptase in epithelial cells and their reciprocal relationship is important for cell adhesion.

机构信息

Advanced Centre for Treatment, Research and Education in Cancer, Tata Memorial Centre, Kharghar, Navi Mumbai 410210, India.

出版信息

Biochem J. 2012 Oct 1;447(1):61-70. doi: 10.1042/BJ20111432.

Abstract

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.

摘要

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。

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