首页> 美国卫生研究院文献>The Journal of Biological Chemistry >ATP-binding Cassette (ABC) Transport System Solute-binding Protein-guided Identification of Novel d-Altritol and Galactitol Catabolic Pathways in Agrobacterium tumefaciens C58
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ATP-binding Cassette (ABC) Transport System Solute-binding Protein-guided Identification of Novel d-Altritol and Galactitol Catabolic Pathways in Agrobacterium tumefaciens C58

机译:根癌农杆菌C58中新型d-麦芽糖醇和半乳糖醇分解代谢途径的ATP结合盒(ABC)运输系统溶质结合蛋白指导的鉴定

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摘要

Innovations in the discovery of the functions of uncharacterized proteins/enzymes have become increasingly important as advances in sequencing technology flood protein databases with an exponentially growing number of open reading frames. This study documents one such innovation developed by the Enzyme Function Initiative (EFI; U54GM093342), the use of solute-binding proteins for transport systems to identify novel metabolic pathways. In a previous study, this strategy was applied to the tripartite ATP-independent periplasmic transporters. Here, we apply this strategy to the ATP-binding cassette transporters and report the discovery of novel catabolic pathways for d-altritol and galactitol in Agrobacterium tumefaciens C58. These efforts resulted in the description of three novel enzymatic reactions as follows: 1) oxidation of d-altritol to d-tagatose via a dehydrogenase in Pfam family PF00107, a previously unknown reaction; 2) phosphorylation of d-tagatose to d-tagatose 6-phosphate via a kinase in Pfam family PF00294, a previously orphan EC number; and 3) epimerization of d-tagatose 6-phosphate C-4 to d-fructose 6-phosphate via a member of Pfam family PF08013, another previously unknown reaction. The epimerization reaction catalyzed by a member of PF08013 is especially noteworthy, because the functions of members of PF08013 have been unknown. These discoveries were assisted by the following two synergistic bioinformatics web tools made available by the Enzyme Function Initiative: the EFI-Enzyme Similarity Tool and the EFI-Genome Neighborhood Tool.
机译:随着测序技术的进步,开放阅读框的数量呈指数增长,泛滥蛋白质数据库的过程中,发现未表征的蛋白质/酶功能的创新变得越来越重要。这项研究记录了由酶功能倡议(EFI; U54GM093342)开发的一项此类创新,即溶质结合蛋白在运输系统中的使用,以识别新的代谢途径。在先前的研究中,此策略应用于不依赖于三方ATP的周质转运蛋白。在这里,我们将这种策略应用于ATP结合盒转运蛋白,并报告根癌土壤杆菌C58中d-麦芽糖醇和半乳糖醇的新型分解代谢途径的发现。这些努力导致对三种新型酶促反应的描述如下:1)通过Pfam家族PF00107中的脱氢酶将d-麦芽糖醇氧化为d-塔格糖,这是以前未知的反应; 2)经由Pfam家族PF00294中的激酶将d-塔格糖磷酸化为d-塔格糖6-磷酸,其是先前的孤儿EC编号; 3)经由Pfam家族PF08013的成员将d-塔格糖6-磷酸C-4差向异构化为d-果糖6-磷酸,这是另一个先前未知的反应。 PF08013成员催化的差向异构反应特别值得注意,因为PF08013成员的功能尚不清楚。这些发现得到了酶功能倡议提供的以下两个协同生物信息学网络工具的帮助:EFI-酶相似性工具和EFI-基因组邻域工具。

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