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A new evolutionary model for the vertebrate actin family including two novel groups

机译:一种新的脊椎动物肌动蛋白家庭进化模型,包括两种新型群体

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摘要

Database surveys in the vertebrate model organisms: chicken (Gallus gallus), western clawed frog (Xenopus tropicalis), anole lizard (Anolis carolinensis) and zebrafish (Danio rerio) indicate that in some of these species the number of actin paralogues differs from the well-established six paralogues in mouse (Mus musculus). To investigate differential functions of actins and for establishing disease models it is important to know how actins in the different model organisms relate to each other and whether the vertebrate actin family is truly limited to six groups. Primarily through synteny analyses we discovered that the vertebrate actin family consists of eight instead of six orthologous actin groups for which we propose improved gene nomenclature. We also established that alpha-skeletal muscle, gamma-enteric smooth muscle and gamma-cytoplasmic actin genes originated prior to tetrapods contradicting an earlier and widely accepted model of actin evolution. Our findings allow a more reliable predictive classification of actin paralogues in (non-mammalian) vertebrates and contribute to a better understanding of actin evolution as basis for biomedical research on actin-related diseases.
机译:数据库调查在脊椎动物模型生物中:鸡肉(巨大巨大),西方爪青蛙(外爪疮麦克风),Anole Lizard(Anolis Carolinensis)和斑马鱼(Danio Rerio)表明,在其中一些物种中,actin谬子的数量与井不同 - 在小鼠(Mus Musculus)中建立的六个副寄生蛋白。为了研究actins的差分功能和建立疾病模型,重要的是要知道不同模型生物中的姿势如何彼此相关,脊椎动物肌动蛋白家族是否真正限于六组。主要通过Synteny分析,我们发现脊椎动物肌动蛋白家族由八个而不是六个正非肌动蛋白组组成,我们提出改善的基因命名法。我们还建立了α-骨骼肌,γ-肠溶肌肉和γ-细胞质肌动蛋白基因在Tetrapods之前起源于肌动蛋白演化的早期和广泛接受的模型。我们的研究结果允许在(非哺乳动物)脊椎动物中更可靠的预测分类(非哺乳动物)脊椎动物,并有助于更好地了解actin演变为肌动蛋白相关疾病的生物医学研究的基础。

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