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A Millennial Myosin Census

机译:千禧年肌球蛋白普查

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摘要

The past decade has seen a remarkable explosion in our knowledge of the size and diversity of the myosin superfamily. Since these actin-based motors are candidates to provide the molecular basis for many cellular movements, it is essential that motility researchers be aware of the complete set of myosins in a given organism. The availability of cDNA and/or draft genomic sequences from humans, Drosophila melanogaster, Caenorhabditis elegans, Arabidopsis thaliana, Saccharomyces cerevisiae, Schizosaccharomyces pombe, and Dictyostelium discoideum has allowed us to tentatively define and compare the sets of myosin genes in these organisms. This analysis has also led to the identification of several putative myosin genes that may be of general interest. In humans, for example, we find a total of 40 known or predicted myosin genes including two new myosins-I, three new class II (conventional) myosins, a second member of the class IIIinaC myosins, a gene similar to the class XV deafness myosin, and a novel myosin sharing at most 33% identity with other members of the superfamily. These myosins are in addition to the recently discovered class XVI myosin with N-terminal ankyrin repeats and two human genes with similarity to the class XVIII PDZ-myosin from mouse. We briefly describe these newly recognized myosins and extend our previous phylogenetic analysis of the myosin superfamily to include a comparison of the complete or nearly complete inventories of myosin genes from several experimentally important organisms.
机译:在过去的十年中,我们对肌球蛋白超家族的大小和多样性的认识有了惊人的增长。由于这些基于肌动蛋白的马达是为许多细胞运动提供分子基础的候选者,因此运动研究人员必须了解给定生物中完整的肌球蛋白集合。来自人类,果蝇,秀丽隐杆线虫,拟南芥,酿酒酵母,裂殖酵母和盘基网柄菌的cDNA和/或基因组草图序列的可用性使我们能够初步定义并比较这些肌球蛋白基因。该分析还导致鉴定了可能普遍感兴趣的几种推定的肌球蛋白基因。例如,在人类中,我们发现了总共40种已知或预测的肌球蛋白基因,包括两个新的肌球蛋白-I,三个新的II类(常规)肌球蛋白,第三类/ ninaC肌球蛋白的第二个成员,该基因与该类相似XV耳聋肌球蛋白,一种新型肌球蛋白与其他人共享最多33%的身份 超家族的成员。这些肌球蛋白是除 最近发现的具有N末端锚蛋白重复序列​​的XVI类肌球蛋白 和两个与XVIII PDZ-肌球蛋白类相似的人类基因 老鼠。我们简要描述这些新发现的肌球蛋白并扩展 我们之前对肌球蛋白超家族的系统发育分析包括 肌球蛋白完整或几乎完整库存的比较 来自几个实验重要生物的基因。

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