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免疫球蛋白样蛋白Hibris作为成肌细胞融合的剂量依赖性调节因子,受Ras和Notch信号通路的差异调控。

The immunoglobulin-like protein Hibris functions as a dose-dependent regulator of myoblast fusion and is differentially controlled by Ras and Notch signaling.

作者信息

Artero R D, Castanon I, Baylies M K

机构信息

Molecular Biology Program, Sloan-Kettering Institute, Memorial Sloan-Kettering Cancer Center, 1275 York Avenue, New York, NY 10021, USA.

出版信息

Development. 2001 Nov;128(21):4251-64. doi: 10.1242/dev.128.21.4251.

Abstract

Hibris (Hbs) is a transmembrane immunoglobulin-like protein that shows extensive homology to Drosophila Sticks and stones (Sns) and human kidney protein Nephrin. Hbs is expressed in embryonic visceral, somatic and pharyngeal mesoderm among other tissues. In the somatic mesoderm, Hbs is restricted to fusion competent myoblasts and is regulated by Notch and Ras signaling pathways. Embryos that lack or overexpress hbs show a partial block of myoblast fusion, followed by abnormal muscle morphogenesis. Abnormalities in visceral mesoderm are also observed. In vivo mapping of functional domains suggests that the intracellular domain mediates Hbs activity. Hbs and its paralog, Sns, co-localize at the cell membrane of fusion-competent myoblasts. The two proteins act antagonistically: loss of sns dominantly suppresses the hbs myoblast fusion and visceral mesoderm phenotypes, and enhances Hbs overexpression phenotypes. Data from a P-homed enhancer reporter into hbs and co-localization studies with Sns suggest that hbs is not continuously expressed in all fusion-competent myoblasts during the fusion process. We propose that the temporal pattern of hbs expression within fusion-competent myoblasts may reflect previously undescribed functional differences within this myoblast population.

摘要

傲慢蛋白(Hbs)是一种跨膜免疫球蛋白样蛋白,与果蝇的“棍棒与石头”蛋白(Sns)和人类肾脏蛋白Nephrin具有广泛的同源性。Hbs在胚胎的内脏中胚层、体节中胚层和咽中胚层等多种组织中表达。在体节中胚层中,Hbs局限于具有融合能力的成肌细胞,并受Notch和Ras信号通路调控。缺乏或过度表达hbs的胚胎显示成肌细胞融合部分受阻,随后出现异常的肌肉形态发生。在内脏中胚层也观察到异常。功能域的体内定位表明,细胞内结构域介导Hbs的活性。Hbs及其旁系同源物Sns在具有融合能力的成肌细胞的细胞膜上共定位。这两种蛋白起拮抗作用:sns的缺失可显著抑制hbs的成肌细胞融合和内脏中胚层表型,并增强Hbs过表达表型。将一个P-同源增强子报告基因导入hbs以及与Sns进行共定位研究的数据表明,在融合过程中,hbs并非在所有具有融合能力的成肌细胞中持续表达。我们推测,具有融合能力的成肌细胞内hbs表达的时间模式可能反映了该成肌细胞群体中先前未描述的功能差异。

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