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斑马鱼 Dkk3a 蛋白通过与膜受体整合素 α6b 的相互作用调节 myf5 启动子的活性。

Zebrafish Dkk3a protein regulates the activity of myf5 promoter through interaction with membrane receptor integrin α6b.

机构信息

Institute of Molecular and Cellular Biology, National Taiwan University, Number 1, Section 4, Roosevelt Road, Taipei 106, Taiwan.

出版信息

J Biol Chem. 2012 Nov 16;287(47):40031-42. doi: 10.1074/jbc.M112.395012. Epub 2012 Sep 28.

Abstract

Myogenic regulatory factor Myf5 plays important roles in muscle development. In zebrafish myf5, a microRNA (miR), termed miR-3906 or miR-In300, was reported to silence dickkopf-3-related gene (dkk3r or dkk3a), resulting in repression of myf5 promoter activity. However, the membrane receptor that interacts with ligand Dkk3a to control myf5 expression through signal transduction remains unknown. To address this question, we applied immunoprecipitation and LC-MS/MS to screen putative membrane receptors of Dkk3a, and Integrin α6b (Itgα6b) was finally identified. To further confirm this, we used cell surface binding assays, which showed that Dkk3a and Itgα6b were co-expressed at the cell membrane of HEK-293T cells. Cross-linking immunoprecipitation data also showed high affinity of Itgα6b for Dkk3a. We further proved that the β-propeller repeat domains of Itgα6b are key segments bound by Dkk3a. Moreover, when dkk3a and itgα6b mRNAs were co-injected into embryos, luciferase activity was up-regulated 4-fold greater than that of control embryos. In contrast, the luciferase activities of dkk3a knockdown embryos co-injected with itgα6b mRNA and itgα6b knockdown embryos co-injected with dkk3a mRNA were decreased in a manner similar to that in control embryos, respectively. Knockdown of itgα6b resulted in abnormal somite shape, fewer somitic cells, weaker or absent myf5 expression, and reduced the protein level of phosphorylated p38a in somites. These defective phenotypes of trunk muscular development were similar to those of dkk3a knockdown embryos. We demonstrated that the secreted ligand Dkk3a binds to the membrane receptor Itgα6b, which increases the protein level of phosphorylated p38a and activates myf5 promoter activity of zebrafish embryos during myogenesis.

摘要

肌生成调节因子 Myf5 在肌肉发育中发挥重要作用。在斑马鱼 myf5 中,报道了一种 microRNA(miR),称为 miR-3906 或 miR-In300,它沉默 dickkopf-3 相关基因(dkk3r 或 dkk3a),从而抑制 myf5 启动子活性。然而,与配体 Dkk3a 相互作用的膜受体,通过信号转导来控制 myf5 表达的膜受体仍然未知。为了解决这个问题,我们应用免疫沉淀和 LC-MS/MS 筛选 Dkk3a 的假定膜受体,最终鉴定出整合素 α6b(Itgα6b)。为了进一步证实这一点,我们使用细胞表面结合测定法,结果表明 Dkk3a 和 Itgα6b 共表达于 HEK-293T 细胞的细胞膜上。交联免疫沉淀数据还表明 Itgα6b 与 Dkk3a 具有高亲和力。我们进一步证明,Itgα6b 的β-桨叶重复结构域是 Dkk3a 结合的关键片段。此外,当 dkk3a 和 itgα6b mRNA 共注射到胚胎中时,荧光素酶活性比对照胚胎高 4 倍。相比之下,dkk3a 敲低胚胎共注射 itgα6b mRNA 和 itgα6b 敲低胚胎共注射 dkk3a mRNA 的荧光素酶活性分别以类似于对照胚胎的方式降低。Itgα6b 的敲低导致体节形状异常、体节细胞减少、myf5 表达减弱或缺失,以及体节中磷酸化 p38a 的蛋白水平降低。这些躯干肌肉发育的缺陷表型与 dkk3a 敲低胚胎相似。我们证明了分泌配体 Dkk3a 与膜受体 Itgα6b 结合,增加了磷酸化 p38a 的蛋白水平,并在斑马鱼胚胎肌发生过程中激活了 myf5 启动子活性。

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