Buensuceso C S, Woodside D, Huff J L, Plopper G E, O'Toole T E
Department of Vascular Biology, Scripps Research Institute-VB2, La Jolla, CA 92037, USA.
J Cell Sci. 2001 May;114(Pt 9):1691-8. doi: 10.1242/jcs.114.9.1691.
The scaffolding protein, Rack1, is a seven-WD-domain-containing protein that has been implicated in binding to integrin beta subunit cytoplasmic domains and to members of two kinase families (src and protein kinase C, PKC) that mediate integrin bidirectional signaling. To explore the role of Rack1 in integrin function we have transfected this protein in Chinese hamster ovary (CHO) cells. We have observed no effect of Rack1 overexpression on inside-out signaling as the ligand binding properties of CHO cells also expressing constitutively active or inactive integrins were not affected. In contrast, we observed that cells stably or transiently overexpressing Rack1 had decreased migration compared to mock transfected cells. Stable Rack1 transfectants also demonstrated an increased number of actin stress fibers and focal contacts. These effects on motility and cytoskeletal organization did not appear to result from Rack1 inhibition of src function as downstream substrates of this kinase were phosphorylated normally. In addition, expression of an active src construct did not reverse the migratory deficit induced by Rack1 overexpression. On the other hand when we overexpressed a Rack1 variant with alanine substitutions in the putative PKC binding site in its third WD domain, we observed no deficit in migration. Thus the ability of Rack1 to bind, localize and stabilize PKC isoforms is likely to be involved in aspects of integrin outside-in signaling.
支架蛋白Rack1是一种含有7个WD结构域的蛋白质,它与整合素β亚基的胞质结构域以及介导整合素双向信号传导的两个激酶家族(src和蛋白激酶C,PKC)的成员结合有关。为了探究Rack1在整合素功能中的作用,我们将这种蛋白转染到中国仓鼠卵巢(CHO)细胞中。我们观察到Rack1过表达对由内向外信号传导没有影响,因为表达组成型活性或非活性整合素的CHO细胞的配体结合特性未受影响。相反,我们观察到与mock转染细胞相比,稳定或瞬时过表达Rack1的细胞迁移能力下降。稳定的Rack1转染细胞还表现出肌动蛋白应力纤维和粘着斑数量增加。这些对运动性和细胞骨架组织的影响似乎不是由Rack1对src功能的抑制引起的,因为该激酶的下游底物磷酸化正常。此外,活性src构建体的表达并没有逆转由Rack1过表达诱导的迁移缺陷。另一方面,当我们在其第三个WD结构域中假定的PKC结合位点过表达带有丙氨酸替代的Rack1变体时,我们没有观察到迁移缺陷。因此,Rack1结合、定位和稳定PKC同工型的能力可能参与整合素由外向内信号传导的各个方面。