首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Inactive 44-kDa Processed Form of Membrane Type 1 Matrix Metalloproteinase (MT1-MMP) Enhances Proteolytic Activity via Regulation of Endocytosis of Active MT1-MMP
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The Inactive 44-kDa Processed Form of Membrane Type 1 Matrix Metalloproteinase (MT1-MMP) Enhances Proteolytic Activity via Regulation of Endocytosis of Active MT1-MMP

机译:膜类型1基质的非活性44 kDa处理形式 金属蛋白酶(MT1-MMP)通过调节蛋白来增强蛋白水解活性 活性成分的胞吞作用 MT1-MMP

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摘要

Membrane type 1 (MT1) matrix metalloproteinase (MMP-14) is a membrane-tethered MMP considered to be a major mediator of pericellular proteolysis. MT1-MMP is regulated by a complex array of mechanisms, including processing and endocytosis that determine the pool of active proteases on the plasma membrane. Autocatalytic processing of active MT1-MMP generates an inactive membrane-tethered 44-kDa product (44-MT1) lacking the catalytic domain. This form preserves all other enzyme domains and is retained at the cell surface. Paradoxically, accumulation of the 44-kDa form has been associated with increased enzymatic activity. Here we report that expression of a recombinant 44-MT1 (Gly285–Val582) in HT1080 fibrosarcoma cells results in enhanced pro-MMP-2 activation, proliferation within a three-dimensional collagen I matrix, and tumor growth and lung metastasis in mice. Stimulation of pro-MMP-2 activation and growth in collagen I was also observed in other cell systems. Expression of 44-MT1 in HT1080 cells is associated with a delay in the rate of active MT1-MMP endocytosis resulting in higher levels of active enzyme at the cell surface. Consistently, deletion of the cytosolic domain obliterates the stimulatory effects of 44-MT1 on MT1-MMP activity. In contrast, deletion of the hinge turns the 44-MT1 form into a negative regulator of enzyme function in vitro and in vivo, suggesting a key role for the hinge region in the functional relationship between active and processed MT1-MMP. Together, these results suggest a novel role for the 44-kDa form of MT1-MMP generated during autocatalytic processing in maintaining the pool of active enzyme at the cell surface.
机译:膜1型(MT1)基质金属蛋白酶(MMP-14)是膜连接的MMP,被认为是细胞周围蛋白水解的主要介质。 MT1-MMP受一系列复杂机制的调节,包括加工和胞吞作用,这些作用决定了质膜上活性蛋白酶的库。活性MT1-MMP的自动催化处理会产生缺乏催化域的无活性膜束缚的44 kDa产物(44-MT1)。这种形式保留了所有其他酶结构域,并保留在细胞表面。矛盾的是,44 kDa形式的积累与增加的酶活性有关。在这里,我们报告说,HT1080纤维肉瘤细胞中重组44-MT1(Gly 285 –Val 582 )的表达导致增强的pro-MMP-2激活,三者之间的增殖维胶原蛋白I基质,以及小鼠的肿瘤生长和肺转移。在其他细胞系统中也观察到了促胶原蛋白I的前MMP-2激活和生长。 HT1080细胞中44-MT1的表达与MT1-MMP活性内吞速率的延迟相关,导致细胞表面活性酶水平更高。一致地,胞浆结构域的缺失消除了44-MT1的刺激作用 关于MT1-MMP活性。相反,删除铰链会变成44-MT1形式 在体外和体内都成为酶功能的负调节剂 体内,提示铰链区在功能中起关键作用 活动的MT1-MMP与已处理的MT1-MMP之间的关系。一起,这些结果 提出了一种新的作用,用于在过程中产生的MT1-MMP的44 kDa形式 保持细胞内活性酶库的自动催化处理 表面。

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