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首页> 外文期刊>Molecular and Cellular Biology >RACK1, an Insulin-Like Growth Factor I (IGF-I) Receptor-Interacting Protein, Modulates IGF-I-Dependent Integrin Signaling and Promotes Cell Spreading and Contact with Extracellular Matrix
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RACK1, an Insulin-Like Growth Factor I (IGF-I) Receptor-Interacting Protein, Modulates IGF-I-Dependent Integrin Signaling and Promotes Cell Spreading and Contact with Extracellular Matrix

机译:RACK1,一种胰岛素样生长因子I(IGF-I)受体相互作用蛋白,调节IGF-I依赖性整合素信号传导,并促进细胞扩散和与细胞外基质的接触

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The insulin-like growth factor I (IGF-I) receptor (IGF-IR) is known to regulate a variety of cellular processes including cell proliferation, cell survival, cell differentiation, and cell transformation. IRS-1 and Shc, substrates of the IGF-IR, are known to mediate IGF-IR signaling pathways such as those of mitogen-activated protein kinase (MAPK) and phosphatidylinositol 3-kinase (PI3K), which are believed to play important roles in some of the IGF-IR-dependent biological functions. We used the cytoplasmic domain of IGF-IR in a yeast two-hybrid interaction trap to identify IGF-IR-interacting molecules that may potentially mediate IGF-IR-regulated functions. We identified RACK1, a WD repeat family member and a Gβ homologue, and demonstrated that RACK1 interacts with the IGF-IR but not with the closely related insulin receptor (IR). In several types of mammalian cells, RACK1 interacted with IGF-IR, protein kinase C, and β1 integrin in response to IGF-I and phorbol 12-myristate 13-acetate stimulation. Whereas most of RACK1 resides in the cytoskeletal compartment of the cytoplasm, transformation of fibroblasts and epithelial cells by v-Src, oncogenic IR or oncogenic IGF-IR, but not by Ros or Ras, resulted in a significantly increased association of RACK1 with the membrane. We examined the role of RACK1 in IGF-IR-mediated functions by stably overexpressing RACK1 in NIH 3T3 cells that expressed an elevated level of IGF-IR. RACK1 overexpression resulted in reduced IGF-I-induced cell growth in both anchorage-dependent and anchorage-independent conditions. Overexpression of RACK1 also led to enhanced cell spreading, increased stress fibers, and increased focal adhesions, which were accompanied by increased tyrosine phosphorylation of focal adhesion kinase and paxillin. While IGF-I-induced activation of IRS-1, Shc, PI3K, and MAPK pathways was unaffected, IGF-I-inducible β1 integrin-associated kinase activity and association of Crk with p130CAS were significantly inhibited by RACK1 overexpression. In RACK1-overexpressing cells, delayed cell cycle progression in G1 or G1/S was correlated with retinoblastoma protein hypophophorylation, increased levels of p21Cip1/WAF1 and p27Kip1, and reduced IGF-I-inducible Cdk2 activity. Reduction of RACK1 protein expression by antisense oligonucleotides prevented cell spreading and suppressed IGF-I-dependent monolayer growth. Our data suggest that RACK1 is a novel IGF-IR signaling molecule that functions as a positive mediator of cell spreading and contact with extracellular matrix, possibly through a novel IGF-IR signaling pathway involving integrin and focal adhesion signaling molecules.
机译:已知胰岛素样生长因子I(IGF-1)受体(IGF-1R)调节多种细胞过程,包括细胞增殖,细胞存活,细胞分化和细胞转化。已知IRS-1和Shc是IGF-IR的底物,可介导IGF-IR信号传导途径,例如有丝分裂原激活的蛋白激酶(MAPK)和磷脂酰肌醇3-激酶(PI3K)的信号传导途径,它们被认为发挥重要作用在某些依赖IGF-IR的生物学功能中。我们在酵母双杂交相互作用陷阱中使用了IGF-IR的胞质域,以识别可能潜在地介导IGF-IR调节功能的IGF-IR相互作用分子。我们鉴定了RACK1,一个WD重复家族成员和一个Gβ同源物,并证明RACK1与IGF-IR相互作用,但不与紧密相关的胰岛素受体(IR)相互作用。在几种类型的哺乳动物细胞中,RACK1与IGF-1R,蛋白激酶C和β1整联蛋白相互作用,以响应IGF-1和佛波醇12-肉豆蔻酸酯13-乙酸酯刺激。尽管大多数RACK1驻留在细胞质的细胞骨架区室,但成纤维细胞和上皮细胞通过v-Src,致癌性IR或致癌性IGF-IR而不是通过Ros或Ras进行转化,导致RACK1与膜的结合显着增加。我们通过在表达IGF-IR水平升高的NIH 3T3细胞中稳定地过表达RACK1,研究了RACK1在IGF-IR介导的功能中的作用。 RACK1的过表达导致依赖于锚固和不依赖于锚固的条件下IGF-I诱导的细胞生长减少。 RACK1的过表达还导致细胞扩散增强,应力纤维增加和粘着斑增加,并伴有粘着斑激酶和Paxillin的酪氨酸磷酸化增加。尽管IGF-I诱导的IRS-1,Shc,PI3K和MAPK途径的激活不受影响,但IGF-I诱导的β1整合素相关激酶活性以及Crk与p130 CAS 的关联均受到显着抑制通过RACK1过表达。在过表达RACK1的细胞中,G 1 或G 1 / S中细胞周期进程的延迟与视网膜母细胞瘤蛋白的低磷酸化,p21 Cip1 / WAF1 < / sup>和p27 Kip1 ,并降低了IGF-I诱导的Cdk2活性。通过反义寡核苷酸减少RACK1蛋白表达可防止细胞扩散并抑制IGF-I依赖的单层生长。我们的数据表明,RACK1是一种新型IGF-IR信号分子,可能通过涉及整合素和粘着斑信号分子的新型IGF-IR信号通路,充当细胞扩散和与细胞外基质接触的正向介质。

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