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Functional and evolutionary analysis of DXL1, a non-essential gene encoding a 1-deoxy-D-xylulose 5-phosphate synthase like protein in arabidopsis thaliana

机译:DXL1的功能和进化分析,DXL1是拟南芥中编码1-脱氧-D-木酮糖5-磷酸合成酶蛋白的非必需基因

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摘要

The synthesis of 1-deoxy-D-xylulose 5-phosphate (DXP), catalyzed by the enzyme DXP synthase (DXS), represents a key regulatory step of the 2-C-methyl-D-erythritol 4-phosphate (MEP) pathway for isoprenoid biosynthesis. In plants DXS is encoded by small multigene families that can be classified into, at least, three specialized subfamilies. Arabidopsis thaliana contains three genes encoding proteins with similarity to DXS, including the well-known DXS1/. CLA1 gene, which clusters within subfamily I. The remaining proteins, initially named DXS2 and DXS3, have not yet been characterized. Here we report the expression and functional analysis of A. thaliana DXS2. Unexpectedly, the expression of DXS2 failed to rescue Escherichia coli and A. thaliana mutants defective in DXS activity. Coherently, we found that DXS activity was negligible in vitro, being renamed as DXL1 following recent nomenclature recommendation. DXL1 is targeted to plastids as DXS1, but shows a distinct expression pattern. The phenotypic analysis of a DXL1 defective mutant revealed that the function of the encoded protein is not essential for growth and development. Evolutionary analyses indicated that DXL1 emerged from DXS1 through a recent duplication apparently specific of the Brassicaceae lineage. Divergent selective constraints would have affected a significant fraction of sites after diversification of the paralogues. Furthermore, amino acids subjected to divergent selection and likely critical for functional divergence through the acquisition of a novel, although not yet known, biochemical function, were identified. Our results provide with the first evidences of functional specialization at both the regulatory and biochemical level within the plant DXS family. © 2012 Elsevier B.V.
机译:DXP合酶(DXS)催化的1-脱氧-D-木酮糖5-磷酸(DXP)的合成代表了2-C-甲基-D-赤藓糖醇4-磷酸(MEP)途径的关键调控步骤用于类异戊二烯的生物合成。在植物中,DXS由小的多基因家族编码,这些家族至少可以分为三个专门的亚家族。拟南芥包含三个编码与DXS相似的蛋白质的基因,包括著名的DXS1 /。 CLA1基因聚集在亚家族I中。剩余的蛋白质,最初命名为DXS2和DXS3,尚未鉴定。在这里,我们报告拟南芥DXS2的表达和功能分析。出乎意料的是,DXS2的表达未能拯救DXS活性缺陷的大肠杆菌和拟南芥突变体。一致地,我们发现DXS活性在体外可忽略不计,在最近的命名建议之后被更名为DXL1。 DXL1与DXS1一样靶向质体,但显示出独特的表达模式。 DXL1缺陷突变体的表型分析表明,编码蛋白的功能对于生长和发育不是必需的。进化分析表明,DXL1通过最近对十字花科的血统特异性的复制从DXS1中出现。在旁系动物多样化之后,不同的选择性限制会影响很大一部分站点。此外,鉴定了经历发散选择并且可能通过获得新的生化功能(尽管尚不知道)对功能发散至关重要的氨基酸。我们的结果为植物DXS家族在监管和生化水平上的功能专业化提供了首个证据。 ©2012 Elsevier B.V.

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