Department of Pharmacology, Cardiovascular Research Centre, Mazankowski Alberta Heart Institute, University of Alberta, Edmonton, Alberta, Canada.
J Cell Physiol. 2012 Oct;227(10):3397-404. doi: 10.1002/jcp.24040.
Matrix metalloproteinase-2 (MMP-2) is best understood for its biological actions outside the cell. However, MMP-2 also localizes to intracellular compartments and the cytosol where it has several substrates, including troponin I (TnI). Despite a growing list of cytosolic substrates, we currently do not know the mechanism(s) that give rise to the equilibrium between intracellular and secreted MMP-2 moieties. Therefore, we explored how cells achieve the unique distribution of this protease. Our data show that endogenous MMP-2 targets inefficiently to the endoplasmic reticulum (ER) and shows significant amounts in the cytosol. Transfection of canonical MMP-2 essentially reproduces this targeting pattern, suggesting it is the quality of the MMP-2 signal sequence that predominantly determines MMP-2 targeting. However, we also found that human cardiomyocytes express an MMP-2 splice variant which entirely lacks the signal sequence. Like the fraction of ER-excluded, full-length MMP-2, this variant MMP-2 is restricted to the cytosol and specifically enhances TnI cleavage upon hypoxia-reoxygenation injury in cardiomyocytes. Together, our findings describe for the first time a set of mechanisms that cells utilize to equilibrate MMP-2 both in the extracellular milieu and intracellular, cytosolic locations. Our results also suggest approaches to specifically investigate the overlooked intracellular biology of MMP-2.
基质金属蛋白酶-2(MMP-2)在细胞外的生物学作用最为人所熟知。然而,MMP-2 也定位于细胞内区室和细胞质,在那里它有几个底物,包括肌钙蛋白 I(TnI)。尽管细胞质底物的清单不断增加,但我们目前不知道导致细胞内和分泌 MMP-2 部分之间平衡的机制。因此,我们探讨了细胞如何实现这种蛋白酶的独特分布。我们的数据表明,内源性 MMP-2 靶向内质网(ER)的效率较低,并且在细胞质中存在大量的 MMP-2。经典 MMP-2 的转染基本上再现了这种靶向模式,这表明 MMP-2 信号序列的质量主要决定了 MMP-2 的靶向。然而,我们还发现,人心肌细胞表达一种完全缺乏信号序列的 MMP-2 剪接变体。与 ER 排除的全长 MMP-2 一样,这种变体 MMP-2 也局限于细胞质,并且在心肌细胞缺氧再复氧损伤时特异性增强 TnI 的切割。总之,我们的研究结果首次描述了一组机制,细胞利用这些机制在细胞外环境和细胞内、细胞质位置之间平衡 MMP-2。我们的研究结果还表明了一些方法来专门研究 MMP-2 被忽视的细胞内生物学。