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首页> 外文期刊>BMC Developmental Biology >The C. elegans EMAP-like protein, ELP-1 is required for touch sensation and associates with microtubules and adhesion complexes
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The C. elegans EMAP-like protein, ELP-1 is required for touch sensation and associates with microtubules and adhesion complexes

机译:秀丽隐杆线虫的EMAP样蛋白ELP-1是触摸感应所必需的,并与微管和粘附复合物相关

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Background The founding member of the EMAP-like protein family is the Echinoderm Microtubule-Associated Protein (EMAP), so-named for its abundance in sea urchin, starfish, and sand dollar eggs. The EMAP-like protein family has five members in mammals (EML1 through EML5) and only one in both Drosophila (ELP-1) and C. elegans (ELP-1). Biochemical studies of sea urchin EMAP and vertebrate EMLs implicate these proteins in the regulation of microtubule stability. So far, however, the physiological function of this protein family remains unknown. Results We examined the expression pattern of C. elegans ELP-1 by means of transgenic gene expression in living embryos and adults, and by immunolocalization with an ELP-1-specific antibody in fixed tissues. In embryos, ELP-1 is expressed in the hypodermis. In larvae and adults, ELP-1 is expressed in the body wall, spermatheca and vulval muscles, intestine, and hypodermal seam cells. In muscle, ELP-1 is associated with adhesion complexes near the cell surface and is bound to a criss-crossing network of microtubules in the cytoplasm. ELP-1 is also expressed in a subset of mechanoreceptor neurons, including the ray neurons in the male tail, microtubule-rich touch receptor neurons, and the six ciliated IL1 neurons. This restricted localization in the nervous system implies that ELP-1 plays a role in mechanotransmission. Consistent with this idea, decreasing ELP-1 expression decreases sensitivity to gentle touch applied to the body wall. Conclusion These data imply that ELP-1 may play an important role during the transmission of forces and signals between the body surface and both muscle cells and touch receptor neurons.
机译:背景EMAP样蛋白家族的创始成员是棘皮动物微管相关蛋白(EMAP),因其在海胆,海星和沙钱卵中的丰度而得名。 EMAP样蛋白家族在哺乳动物中有5个成员(EML1至EML5),在果蝇(ELP-1)和秀丽隐杆线虫(ELP-1)中只有1个成员。海胆EMAP和脊椎动物EML的生化研究表明,这些蛋白质参与了微管稳定性的调节。然而,到目前为止,该蛋白家族的生理功能仍然未知。结果我们通过在活体胚胎和成年动物中转基因基因表达,以及在固定组织中用ELP-1特异性抗体进行免疫定位,检查了秀丽隐杆线虫ELP-1的表达模式。在胚胎中,ELP-1在皮下组织中表达。在幼虫和成虫中,ELP-1在体壁,精子和外阴肌肉,肠和皮下接缝细胞中表达。在肌肉中,ELP-1与细胞表面附近的粘附复合物相关,并与细胞质中微管的纵横交错网络结合。 ELP-1还表达在机械感受器神经元的子集中,包括雄性尾巴中的射线神经元,富含微管的触摸受体神经元和六个纤毛IL1神经元。这种在神经系统中局限性的定位意味着ELP-1在机械传递中起作用。与这个想法一致,减少ELP-1表达会降低对施加到体壁的轻柔触感的敏感性。结论这些数据表明ELP-1可能在体表与肌肉细胞和触摸受体神经元之间的力和信号传递中起重要作用。

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