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Lysine 63-linked ubiquitination is important for arachidonic acid-induced cellular adhesion and migration

机译:赖氨酸63连接的泛素化对于花生四烯酸诱导的细胞粘附和迁移很重要

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摘要

Arachidonic acid, a dietary cis-polyunsaturated fatty acid, stimulates adhesion and migration of human cancer cells on the extracellular matrix by activation of intracellular signaling pathways. Polyubiquitin chains bearing linkages through different lysine residues convey distinct structural and functional information that is important for signal transduc-tion. We investigated whether ubiquitination was required for arachidonic acid-induced cellular adhesion and migration of MDA-MB-435 cells on collagen type IV. An El (ubiquitin-activating enzyme) inhibitor, PYR-431, completely abrogated arachidonic acid-stimulated adhesion. Additionally, expression of a lysine null mutant ubiquitin prevented activation of cellular adhesion. Cells expressing ubiquitin in which lysine 63 (K63) was mutated to arginine (K63R) were unable to adhere to collagen upon exposure to arachidonic acid. When K63 was the only lysine present, the cells retained the ability to adhere, indicating that K63-linked ubiquitin is both necessary and sufficient. Moreover, K63-linked ubiquitin was required for the induction of cell migration by arachidonic acid. The ubiquitin mutants and PYR-431 did not prevent arachidonic acid-induced phosphorylation of TGF-beta activated kinase-1 (TAK1) and p38 MAPK, suggesting K63-linked ubiquitination occurs downstream of MAPK. These novel findings are the first to demonstrate a role for K63-linked ubiquitination in promoting cell adhesion and migration.
机译:花生四烯酸,一种饮食中的顺式-多不饱和脂肪酸,通过激活细胞内信号传导途径刺激人癌细胞在细胞外基质上的粘附和迁移。通过不同的赖氨酸残基连接的聚泛素链传达了独特的结构和功能信息,这对于信号转导很重要。我们调查了花生四烯酸诱导的细胞粘附和MDA-MB-435细胞在IV型胶原上的迁移是否需要泛素化。 El(泛素激活酶)抑制剂PYR-431完全消除了花生四烯酸刺激的粘附。另外,赖氨酸无效突变体泛素的表达阻止了细胞粘附的激活。赖氨酸63(K63)突变为精氨酸(K63R)的表达泛素的细胞在暴露于花生四烯酸后无法粘附胶原。当K63是唯一存在的赖氨酸时,细胞保留了粘附能力,表明K63连接的泛素既必要又充分。此外,通过花生四烯酸诱导细胞迁移需要K63连接的泛素。泛素突变体和PYR-431不能阻止花生四烯酸诱导的TGF-β活化激酶-1(TAK1)和p38 MAPK的磷酸化,表明K63连接的泛素化发生在MAPK的下游。这些新颖的发现是第一个证明K63连接的泛素化在促进细胞粘附和迁移中的作用的新发现。

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