Nelson Celeste M, Khauv Davitte, Bissell Mina J, Radisky Derek C
Life Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA.
J Cell Biochem. 2008 Sep 1;105(1):25-33. doi: 10.1002/jcb.21821.
Cell morphology dictates response to a wide variety of stimuli, controlling cell metabolism, differentiation, proliferation, and death. Epithelial-mesenchymal transition (EMT) is a developmental process in which epithelial cells acquire migratory characteristics, and in the process convert from a "cuboidal" epithelial structure into an elongated mesenchymal shape. We had shown previously that matrix metalloproteinase-3 (MMP3) can stimulate EMT of cultured mouse mammary epithelial cells through a process that involves increased expression of Rac1b, a protein that stimulates alterations in cytoskeletal structure. We show here that cells treated with MMP-3 or induced to express Rac1b spread to cover a larger surface, and that this induction of cell spreading is a requirement of MMP-3/Rac1b-induced EMT. We find that limiting cell spreading, either by increasing cell density or by culturing cells on precisely defined micropatterned substrata, blocks expression of characteristic markers of EMT in cells treated with MMP-3. These effects are not caused by general disruptions in cell signaling pathways, as TGF-beta-induced EMT is not affected by similar limitations on cell spreading. Our data reveal a previously unanticipated cell shape-dependent mechanism that controls this key phenotypic alteration and provide insight into the distinct mechanisms activated by different EMT-inducing agents.
细胞形态决定了细胞对多种刺激的反应,控制着细胞代谢、分化、增殖和死亡。上皮-间质转化(EMT)是一个发育过程,在此过程中上皮细胞获得迁移特性,并在此过程中从“立方状”上皮结构转变为细长的间质形状。我们之前已经表明,基质金属蛋白酶-3(MMP3)可以通过一个涉及Rac1b表达增加的过程来刺激培养的小鼠乳腺上皮细胞发生EMT,Rac1b是一种刺激细胞骨架结构改变的蛋白质。我们在此表明,用MMP-3处理或诱导表达Rac1b的细胞会铺展以覆盖更大的表面,并且这种细胞铺展的诱导是MMP-3/Rac1b诱导的EMT所必需的。我们发现,通过增加细胞密度或在精确限定的微图案化基质上培养细胞来限制细胞铺展,会阻断用MMP-3处理的细胞中EMT特征性标志物的表达。这些效应不是由细胞信号通路的普遍破坏引起的,因为TGF-β诱导的EMT不受细胞铺展的类似限制的影响。我们的数据揭示了一种以前未预料到的细胞形状依赖性机制,该机制控制着这种关键的表型改变,并为不同的EMT诱导剂激活的不同机制提供了见解。