首页> 美国卫生研究院文献>The Journal of Biological Chemistry >c-Src-mediated Phosphorylation of Thyroid Hormone Receptor-interacting Protein 6 (TRIP6) Promotes Osteoclast Sealing Zone Formation
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c-Src-mediated Phosphorylation of Thyroid Hormone Receptor-interacting Protein 6 (TRIP6) Promotes Osteoclast Sealing Zone Formation

机译:c-Src介导的甲状腺激素受体相互作用蛋白6(TRIP6)的磷酸化促进破骨细胞密封区的形成。

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摘要

Osteoclasts resorb bone through the formation of a unique attachment structure called the sealing zone. In this study, a role for thyroid hormone receptor-interacting protein 6 (TRIP6) in sealing zone formation and osteoclast activity was examined. TRIP6 was shown to reside in the sealing zone through its association with tropomyosin 4, an actin-binding protein that regulates sealing dimensions and bone resorptive capacity. Suppression of TRIP6 in mature osteoclasts by RNA interference altered sealing zone dimensions and inhibited bone resorption, whereas overexpression of TRIP6 increased the sealing zone perimeter and enhanced bone resorption. Treatment of osteoclasts with lysophosphatidic acid (LPA), which phosphorylates TRIP6 at tyrosine 55 through a c-Src-dependent mechanism, caused increased association of TRIP6 with the sealing zone, as did overexpression of a TRIP6 cDNA bearing a phosphomimetic mutation at tyrosine 55. Further, LPA treatment caused increases in osteoclast fusion, sealing zone perimeter, and bone resorptive capacity. In contrast, overexpression of TRIP6 containing a nonphosphorylatable amino acid residue at position 55 severely diminished sealing zone formation and bone resorption and suppressed the effects of LPA on the cytoskeleton. LPA effects were mediated through its receptor isoform LPA(2), as indicated by treatments with receptor-specific agonists and antagonists. Thus, these studies suggest that TRIP6 is a critical downstream regulator of c-Src signaling and that its phosphorylation is permissive for its presence in the sealing zone where it plays a positive role in osteoclast bone resorptive capacity.
机译:破骨细胞通过形成称为密封区域的独特附着结构来吸收骨骼。在这项研究中,研究了甲状腺激素受体相互作用蛋白6(TRIP6)在密封区形成和破骨细胞活性中的作用。 TRIP6通过与原肌球蛋白4(一种调节密封尺寸和骨吸收能力的肌动蛋白结合蛋白)结合而显示在密封区内。 RNA干扰抑制成熟破骨细胞中的TRIP6改变了密封区域的大小并抑制了骨吸收,而TRIP6的过表达增加了密封区域的周长并增强了骨吸收。溶血磷脂酸(LPA)通过c-Src依赖性机制使酪氨酸55处的TRIP6磷酸化,从而处理破骨细胞,导致TRIP6与密封区的结合增加,酪氨酸55处带有磷酸化突变的TRIP6 cDNA的过表达也是如此。此外,LPA处理导致破骨细胞融合,密封区周长和骨吸收能力增加。相反,在55位含有不可磷酸化氨基酸残基的TRIP6的过表达严重减少了密封区的形成和骨吸收,并抑制了LPA对细胞骨架的影响。 LPA的作用是通过其受体同工型LPA(2)介导的,如受体特异性激动剂和拮抗剂的治疗所表明的。因此,这些研究表明TRIP6是c-Src信号传导的关键下游调节剂,并且其磷酸化允许其存在于密封区内,在密封区中它对破骨细胞的骨吸收能力起着积极作用。

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