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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >The Drosophila molybdenum cofactor gene cinnamon is homologous to three Escherichia coli cofactor proteins and to the rat protein gephyrin.
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The Drosophila molybdenum cofactor gene cinnamon is homologous to three Escherichia coli cofactor proteins and to the rat protein gephyrin.

机译:果蝇钼辅助因子基因肉桂与三种大肠杆菌辅助因子蛋白和大鼠蛋白gephyrin同源。

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Essentially all organisms depend upon molybdenum oxidoreductases which require a molybdopterin cofactor for catalytic activity. Mutations resulting in a lack of the cofactor show a pleiotropic loss of molybdoenzyme activities and thereby define genes involved in cofactor biosynthesis or utilization. In prokaryotes, two operons are directly associated with biosynthesis of the pterin moiety and its side chain while additional loci play a role in the acquisition of molybdenum and/or activation of the cofactor. Here we report the cloning of cinnamon, a Drosophila molybdenum cofactor gene encoding a protein with sequence similarity to three of the prokaryotic cofactor proteins. In addition, the Drosophila cinnamon protein is homologous to gephyrin, a protein isolated from the rat central nervous system. Our results suggest that some portions of the prokaryotic cofactor biosynthetic pathway composed of monofunctional proteins have evolved into a multifunctional protein in higher eukaryotes.
机译:基本上所有生物都依赖于钼氧化还原酶,这需要钼蝶呤辅助因子才能发挥催化活性。导致缺乏辅因子的突变显示出钼酶活性的多效性丧失,从而定义了参与辅因子生物合成或利用的基因。在原核生物中,两个操纵子与蝶呤部分及其侧链的生物合成直接相关,而另外的基因座在钼的获得和/或辅因子的活化中起作用。在这里,我们报告了肉桂的克隆,该肉桂是果蝇钼辅助因子基因,其编码与三种原核辅助因子蛋白具有序列相似性的蛋白。此外,果蝇肉桂蛋白与gephyrin同源,gephyrin是从大鼠中枢神经系统中分离出来的蛋白。我们的结果表明,由单功能蛋白组成的原核辅因子生物合成途径的某些部分已在高等真核生物中进化为多功能蛋白。

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