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首页> 外文期刊>The Biochemical Journal >MAP1 structural organization in Drosophila: in vivo analysis of FUTSCH reveals heavy- and light-chain subunits generated by proteolytic processing at a conserved cleavage site.
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MAP1 structural organization in Drosophila: in vivo analysis of FUTSCH reveals heavy- and light-chain subunits generated by proteolytic processing at a conserved cleavage site.

机译:果蝇中的MAP1结构组织:对FUTSCH的体内分析揭示了在保守的切割位点通过蛋白水解过程产生的重链和轻链亚基。

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摘要

The MAP1 (microtubule-associated protein 1) family is a class of microtubule-binding proteins represented by mammalian MAP1A, MAP1B and the recently identified MAP1S. MAP1A and MAP1B are expressed in the nervous system and thought to mediate interactions of the microtubule-based cytoskeleton in neural development and function. The characteristic structural organization of mammalian MAP1s, which are composed of heavy- and light-chain subunits, requires proteolytic cleavage of a precursor polypeptide encoded by the corresponding map1 gene. MAP1 function in Drosophila appears to be fulfilled by a single gene, futsch. Although the futsch gene product is known to share several important functional properties with mammalian MAP1s, whether it adopts the same basic structural organization has not been addressed. Here, we report the identification of a Drosophila MAP1 light chain, LC(f), produced by proteolytic cleavage of a futsch-encoded precursor polypeptide, and confirm co-localization and co-assembly of the heavy chain and LC(f) cleavage products. Furthermore, the in vivo properties of MAP1 proteins were further defined through precise MS identification of a conserved proteolytic cleavage site within the futsch-encoded MAP1 precursor and demonstration of light-chain diversity represented by multiple LC(f) variants. Taken together, these findings establish conservation of proteolytic processing and structural organization among mammalian and Drosophila MAP1 proteins and are expected to enhance genetic analysis of conserved MAP1 functions within the neuronal cytoskeleton.
机译:MAP1(微管相关蛋白1)家族是一类由哺乳动物MAP1A,MAP1B和最近鉴定出的MAP1S代表的微管结合蛋白。 MAP1A和MAP1B在神经系统中表达,并被认为可以介导基于微管的细胞骨架在神经发育和功能中的相互作用。由重链和轻链亚基组成的哺乳动物MAP1s的特征性结构组织,需要对相应map1基因编码的前体多肽进行蛋白水解切割。果蝇中的MAP1功能似乎由单个基因futsch完成。尽管已知futsch基因产物与哺乳动物MAP1具有几个重要的功能特性,但尚未解决它是否采用相同的基本结构组织。在这里,我们报告的果蝇MAP1轻链,LC(f)的鉴定,通过蛋白水解切割富希氏编码的前体多肽,并确认重链和LC(f)裂解产物的共定位和共组装。此外,通过精确的MS鉴定futsch编码的MAP1前体中保守的蛋白水解切割位点并证明由多个LC(f)变体代表的轻链多样性,进一步定义了MAP1蛋白的体内特性。综上所述,这些发现建立了哺乳动物和果蝇MAP1蛋白之间蛋白水解过程和结构组织的保守性,并有望增强神经元细胞骨架中保守MAP1功能的遗传分析。

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