Sabeh Farideh, Shimizu-Hirota Ryoko, Weiss Stephen J
Division of Molecular Medicine and Genetics, Department of Internal Medicine, Life Sciences Institute, University of Michigan, Ann Arbor, MI 48109, USA.
J Cell Biol. 2009 Apr 6;185(1):11-9. doi: 10.1083/jcb.200807195. Epub 2009 Mar 30.
Tissue invasion during metastasis requires cancer cells to negotiate a stromal environment dominated by cross-linked networks of type I collagen. Although cancer cells are known to use proteinases to sever collagen networks and thus ease their passage through these barriers, migration across extracellular matrices has also been reported to occur by protease-independent mechanisms, whereby cells squeeze through collagen-lined pores by adopting an ameboid phenotype. We investigate these alternate models of motility here and demonstrate that cancer cells have an absolute requirement for the membrane-anchored metalloproteinase MT1-MMP for invasion, and that protease-independent mechanisms of cell migration are only plausible when the collagen network is devoid of the covalent cross-links that characterize normal tissues.
转移过程中的组织侵袭要求癌细胞在由I型胶原交联网络主导的基质环境中穿行。虽然已知癌细胞会利用蛋白酶切断胶原网络,从而便于其穿过这些屏障,但也有报道称,细胞可通过不依赖蛋白酶的机制穿越细胞外基质,即细胞通过采用阿米巴样表型挤过由胶原排列的孔隙。我们在此研究这些不同的运动模型,并证明癌细胞侵袭绝对需要膜锚定金属蛋白酶MT1-MMP,而且只有当胶原网络缺乏正常组织特有的共价交联时,细胞迁移的不依赖蛋白酶机制才是合理的。