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SCLIP:一种在神经系统中表达的stathmin家族的新型类SCG10蛋白。

SCLIP: a novel SCG10-like protein of the stathmin family expressed in the nervous system.

作者信息

Ozon S, Byk T, Sobel A

机构信息

INSERM U440, Paris, France.

出版信息

J Neurochem. 1998 Jun;70(6):2386-96. doi: 10.1046/j.1471-4159.1998.70062386.x.

Abstract

Stathmin is a cytosolic phosphoprotein previously described as a ubiquitous relay integrating various signaling pathways. It is the generic element of a protein family in mammals as in Xenopus, including SCG10, a neuron-specific, growth-associated protein, and RB3/XB3, related to the expression of differentiated functions of mature cells of the nervous system. In an extensive search for other members of the stathmin family, we identified cDNAs coding for two novel stathmin-related proteins: (a) a cDNA from a rat striatum cDNA library codes for RB3", a splice variant of RB3, with an additional basic domain in its N-terminal region; and (b) another cDNA identified through a systematic search in EST databases codes for a novel protein, SCLIP, for "SCG10-like protein," displaying 70% identity with SCG10 and sharing the same domain organization, with an N-terminal domain likely involved in membrane attachment and a C-terminal stathmin-like domain. Northern blot analysis as well as in situ hybridization on 14-day rat embryos showed that SCLIP mRNA is expressed only in neural structures. SCLIP mRNA is expressed at comparable levels in neonatal and adult rat brain, suggesting a potential role not only in the acquisition, but also in the expression of differentiated neuronal functions.

摘要

微管相关蛋白2是一种胞质磷蛋白,此前被描述为整合各种信号通路的普遍存在的中继蛋白。它是哺乳动物中与非洲爪蟾中一样的蛋白质家族的通用元件,包括神经元特异性生长相关蛋白SCG10,以及与神经系统成熟细胞分化功能表达相关的RB3/XB3。在对微管相关蛋白2家族的其他成员进行广泛搜索时,我们鉴定出了编码两种新型微管相关蛋白2的cDNA:(a) 来自大鼠纹状体cDNA文库的一个cDNA编码RB3",它是RB3的一个剪接变体,在其N端区域有一个额外的碱性结构域;(b) 通过在EST数据库中系统搜索鉴定出的另一个cDNA编码一种新型蛋白质SCLIP,即“SCG10样蛋白”,与SCG10有70%的同一性,并具有相同的结构域组织,其N端结构域可能参与膜附着,C端有一个微管相关蛋白2样结构域。对14天龄大鼠胚胎的Northern印迹分析以及原位杂交显示,SCLIP mRNA仅在神经结构中表达。SCLIP mRNA在新生大鼠和成年大鼠脑中的表达水平相当,这表明它不仅在分化神经元功能的获得中,而且在其表达中都可能发挥作用。

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