Cancer Research UK Cambridge Institute, Li Ka Shing Centre, Cambridge CB2 0RE, UK.
Center of Excellence in Translational Medicine, Fundeni Clinical Institute, 022328 Bucharest, Romania.
Biomolecules. 2022 Aug 19;12(8):1145. doi: 10.3390/biom12081145.
Homomultimerization of MT1-MMP (membrane type 1 matrix metalloproteinase) through the hemopexin, transmembrane, and cytoplasmic domains plays a very important role in the activation of proMMP-2 and the degradation of pericellular collagen. MT1-MMP is overexpressed in many types of cancers, and it is considered to be a key enzyme in facilitating cancer cell migration. Since the oligomerization of MT1-MMP is important for its proteolytic activity in promoting cancer invasion, we have further investigated the multimerization by using heterologously expressed MT1-MMP ectodomains in insect cells to gain additional mechanistic insight into this process. We show that the whole ectodomain of MT1-MMP can form dimers and higher-order oligomeric complexes. The enzyme is secreted in its active form and the multimeric complex assembly is mediated by the catalytic domain. Blocking the prodomain removal determines the enzyme to adopt the monomeric structure, suggesting that the prodomain prevents the MT1-MMP oligomerization process. The binding affinity of MT1-MMP to type I collagen is dependent on the oligomeric state. Thus, the monomers have the weakest affinity, while the binding strength increases proportionally with the complexity of the multimers. Collectively, our experimental results indicate that the catalytic domain of MT1-MMP is necessary and sufficient to mediate the formation of multimeric structures.
MT1-MMP(膜型 1 基质金属蛋白酶)通过血影蛋白、跨膜和细胞质结构域的同源多聚化在激活 proMMP-2 和细胞周胶原蛋白降解中起着非常重要的作用。MT1-MMP 在许多类型的癌症中过表达,被认为是促进癌细胞迁移的关键酶。由于 MT1-MMP 的寡聚化对于其促进癌症侵袭的蛋白水解活性很重要,因此我们使用昆虫细胞中异源表达的 MT1-MMP 外结构域进一步研究了多聚化,以获得对此过程的更多机制见解。我们表明,MT1-MMP 的整个外结构域可以形成二聚体和更高阶的寡聚复合物。该酶以其活性形式分泌,多聚体复合物的组装由催化结构域介导。阻止前导肽的去除决定了酶采用单体结构,这表明前导肽阻止了 MT1-MMP 的寡聚化过程。MT1-MMP 与 I 型胶原的结合亲和力取决于寡聚状态。因此,单体具有最弱的亲和力,而结合强度随多聚体的复杂性成比例增加。总的来说,我们的实验结果表明,MT1-MMP 的催化结构域是介导多聚体结构形成所必需和充分的。