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Three globin lineages belonging to two structural classes in genomes from the three kingdoms of life

机译:来自三个生命王国的基因组中的两个结构类别的三个球蛋白谱系

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摘要

Although most globins, including the N-terminal domains within chimeric proteins such as flavohemoglobins and globin-coupled sensors, exhibit a 3/3 helical sandwich structure, many bacterial, plant, and ciliate globins have a 2/2 helical sandwich structure. We carried out a comprehensive survey of globins in the genomes from the three kingdoms of life. Bayesian phylogenetic trees based on manually aligned sequences indicate the possibility of past horizontal globin gene transfers from bacteria to eukaryotes. blastp searches revealed the presence of 3/3 single-domain globins related to the globin domains of the bacterial and fungal flavohemoglobins in many bacteria, a red alga, and a diatom. Iterated psi-blast searches based on groups of globin sequences found that only the single-domain globins and flavohemoglobins recognize the eukaryote 3/3 globins, including vertebrate neuroglobins, α- and β-globins, and cytoglobins. The 2/2 globins recognize the flavohemoglobins, as do the globin coupled sensors and the closely related single-domain protoglobins. However, the 2/2 globins and the globin-coupled sensors do not recognize each other. Thus, all globins appear to be distributed among three lineages: (i) the 3/3 plant and metazoan globins, single-domain globins, and flavohemoglobins; (ii) the bacterial 3/3 globin-coupled sensors and protoglobins; and (iii) the bacterial, plant, and ciliate 2/2 globins. The three lineages may have evolved from an ancestral 3/3 or 2/2 globin. Furthermore, it appears likely that the predominant functions of globins are enzymatic and that oxygen transport is a specialized development that accompanied the evolution of metazoans.
机译:尽管大多数球蛋白(包括嵌合蛋白中的N末端结构域,例如黄素血球蛋白和球蛋白偶联的传感器)均显示3/3螺旋三明治结构,但许多细菌,植物和纤毛球蛋白都具有2/2螺旋三明治结构。我们对来自三个生命王国的基因组中的球蛋白进行了全面调查。基于手动比对序列的贝叶斯系统树表明过去水平球蛋白基因从细菌转移到真核生物的可能性。 blastp搜索显示,在许多细菌,红藻和硅藻中,存在与细菌和真菌类黄素球蛋白的球蛋白域相关的3/3单域球蛋白。基于球蛋白序列组的psi-blast迭代搜索发现,只有单域球蛋白和黄素血球蛋白能识别真核生物3/3球蛋白,包括脊椎动物神经球蛋白,α-和β-球蛋白以及细胞球蛋白。 2/2球蛋白识别黄素血球蛋白,球蛋白偶联传感器和紧密相关的单域原球蛋白也是如此。但是,2/2球蛋白和与球蛋白耦合的传感器无法相互识别。因此,所有球蛋白似乎都分布在三个谱系中:(i)3/3植物和后生球蛋白,单域球蛋白和黄素球蛋白; (ii)细菌3/3球蛋白偶联传感器和原球蛋白; (iii)细菌,植物和纤毛2/2球蛋白。这三个世系可能是从祖先的3/3或2/2球蛋白进化而来的。此外,似乎珠蛋白的主要功能是酶促的,并且氧运输是伴随后生动物的进化的专门发展。

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