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The Leishmania donovani UMP Synthase Is Essential for Promastigote Viability and Has an Unusual Tetrameric Structure That Exhibits Substrate-controlled Oligomerization*

机译:利什曼原虫donovani UMP合酶对于前鞭毛体的生存能力是必不可少的,并且具有异常的四聚体结构,可显示底物控制的低聚反应*

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摘要

The final two steps of de novo uridine 5′-monophosphate (UMP) biosynthesis are catalyzed by orotate phosphoribosyltransferase (OPRT) and orotidine 5′-monophosphate decarboxylase (OMPDC). In most prokaryotes and simple eukaryotes these two enzymes are encoded by separate genes, whereas in mammals they are expressed as a bifunctional gene product called UMP synthase (UMPS), with OPRT at the N terminus and OMPDC at the C terminus. Leishmania and some closely related organisms also express a bifunctional enzyme for these two steps, but the domain order is reversed relative to mammalian UMPS. In this work we demonstrate that L. donovani UMPS (LdUMPS) is an essential enzyme in promastigotes and that it is sequestered in the parasite glycosome. We also present the crystal structure of the LdUMPS in complex with its product, UMP. This structure reveals an unusual tetramer with two head to head and two tail to tail interactions, resulting in two dimeric OMPDC and two dimeric OPRT functional domains. In addition, we provide structural and biochemical evidence that oligomerization of LdUMPS is controlled by product binding at the OPRT active site. We propose a model for the assembly of the catalytically relevant LdUMPS tetramer and discuss the implications for the structure of mammalian UMPS.
机译:乳清酸酯磷酸核糖基转移酶(OPRT)和乳清苷5'-单磷酸脱羧酶(OMPDC)催化从头进行尿苷5'-单磷酸(UMP)生物合成的最后两个步骤。在大多数原核生物和简单的真核生物中,这两种酶由单独的基因编码,而在哺乳动物中,它们被表达为称为UMP合酶(UMPS)的双功能基因产物,其N端为OPRT,C端为OMPDC。利什曼原虫和一些密切相关的生物也为这两个步骤表达一种双功能酶,但相对于哺乳动物UMPS,其结构域顺序相反。在这项工作中,我们证明了donovani UMPS(LdUMPS)是前鞭毛体中必不可少的酶,并且被隔离在寄生虫糖体中。我们还介绍了LdUMPS及其产品UMP的晶体结构。该结构揭示了具有两个头对头和两个尾对尾相互作用的不寻常的四聚体,导致了两个二聚体OMPDC和两个二聚体OPRT功能域。此外,我们提供了结构和生化证据,表明LdUMPS的寡聚是由OPRT活性位点处的产物结合所控制的。我们提出了催化相关的LdUMPS四聚体的组装模型,并讨论了对哺乳动物UMPS结构的影响。

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