首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Cloning by insertional mutagenesis of a cDNA encoding Caenorhabditis elegans kinesin heavy chain.
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Cloning by insertional mutagenesis of a cDNA encoding Caenorhabditis elegans kinesin heavy chain.

机译:通过插入诱变克隆编码秀丽隐杆线虫驱动蛋白重链的cDNA。

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摘要

An additional genetic locus in Caenorhabditis elegans, unc-116, was identified in a screen for mutations resulting in defective locomotion. unc-116 was cloned by use of a transposon insertion mutant and the physical and genetic map of the genome. The cDNA sequence predicts an 815-amino acid protein. Based upon sequence comparison and secondary structure predictions, unc-116 encodes all three domains of the kinesin heavy chain: the motor, stalk, and tail. While the motor and tail domains have a high degree of identity to the equivalent domains of cloned kinesin heavy chains, the rodII domain of the stalk is significantly shorter than those previously reported and is not predicted to form a coiled-coil alpha-helix. Analysis of mutational defects in two C. elegans genes encoding anterograde motor molecules, unc-116 and unc-104, should provide insight into the in vivo functions of these members of the kinesin heavy chain superfamily.
机译:在秀丽隐杆线虫的另一种遗传位点,unc-116,在突变中筛选出导致运动缺陷的基因。使用转座子插入突变体以及基因组的物理和遗传图谱克隆了unc-116。 cDNA序列预测815个氨基酸的蛋白质。基于序列比较和二级结构预测,unc-116编码驱动蛋白重链的所有三个域:马达,茎和尾。尽管运动和尾部结构域与克隆的驱动蛋白重链的等效结构域具有高度同一性,但茎的rodII结构域明显短于先前报道的结构,并且预计不会形成卷曲螺旋α-螺旋。对两个编码线虫运动分子unc-116和unc-104的秀丽隐杆线虫基因的突变缺陷进行分析应提供对驱动蛋白重链超家族这些成员体内功能的了解。

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