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Ureidoglycolate hydrolase amidohydrolase lyase: how errors in biological databases are incorporated in scientific papers and vice versa

机译:脲醛酸乙醇酸水解酶酰胺基水解酶裂解酶:如何将生物学数据库中的错误纳入科学论文反之亦然

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摘要

An opaque biochemical definition, an insufficient functional characterization, an interpolated database description, and a beautiful 3D structure with a wrong reaction. All these are elements of an exemplar case of misannotation in biological databases and confusion in the scientific literature concerning genes and enzymes acting on ureidoglycolate, an intermediate of purine catabolism. Here we show biochemical evidence for the relocation of genes assigned to EC 3.5.3.19 (ureidoglycolate hydrolase, releasing ammonia), such as allA of Escherichia coli or DAL3 of Saccharomyces cerevisiae, to EC 4.3.2.3 (ureidoglycolate lyase, releasing urea). The EC 3.5.3.19 should be more appropriately named ureidoglycolate amidohydrolase and include genes equivalent to UAH of Arabidopsis thaliana. The distinction between ammonia- or urea-releasing activities from ureidoglycolate is relevant for the understanding of nitrogen metabolism in various organisms and of virulence factors in certain pathogens rather than a nomenclature problem. We trace the original fault in database annotation and provide a rationale for its incorporation and persistence in the scientific literature. Notwithstanding the technological distance, yet not surprising for the constancy of human nature, error categories and mechanisms established in the study of the work of amanuensis monks still apply to the modern curation of biological databases.
机译:不透明的生化定义,不足的功能表征,内插的数据库描述以及具有错误反应的精美3D结构。所有这些都是生物学数据库中一个示例错误案例的例子,而科学文献中有关作用于尿嘧啶乙醇酸(嘌呤分解代谢的中间产物)的基因和酶的科学文献中的混淆也是如此。在这里,我们显示了将分配给EC 3.5.3.19(脲基乙醇酸水解酶,释放氨)的基因(如大肠杆菌allA或酿酒酵母的DAL3)重新定位到EC 4.3.2.3(脲基乙醇酸裂解酶,释放尿素)的生化证据。 EC 3.5.3.19应该更适当地命名为脲基乙醇酸酰胺水解酶,并包括与拟南芥UAH等效的基因。从脲基乙醇酸酯释放氨或释放尿素的活性之间的区别与理解各种生物中的氮代谢和某些病原体中的毒力因子有关,而不是命名问题。我们在数据库注释中追踪原始故障,并为其在科学文献中的合并和持久性提供依据。尽管技术距离遥远,但对于人性的恒定性而言,毫不奇怪,在研究金刚和尚的过程中建立的错误类别和机制仍然适用于现代生物学数据库。

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