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首页> 外文期刊>Protein Engineering >Structural and functional analysis of a truncated form of Saccharomyces cerevisiae ATP sulfurylase: C-terminal domain essential for oligomer formation but not for activity
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Structural and functional analysis of a truncated form of Saccharomyces cerevisiae ATP sulfurylase: C-terminal domain essential for oligomer formation but not for activity

机译:啤酒酵母ATP硫酸化酶的截短形式的结构和功能分析:C端结构域对低聚物形成必不可少,但对活性没有影响

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摘要

ATP sulfurylase catalyzes the first step in the activation of sulfate by transferring the adenylyl-moiety (AMPsimilar to) of ATP to sulfate to form adenosine 5'-phosphosulfate (APS) and pyrophosphate (PPi). Subsequently, APS kinase mediates transfer of the gamma-phosphoryl group of ATP to APS to form 3'-phosphoadenosine 5'-phosphosulfate ( PAPS) and ADP. The recently determined crystal structure of yeast ATP sulfurylase suggests that its C-terminal domain is structurally quite independent from the other domains, and not essential for catalytic activity. It seems, however, to dictate the oligomerization state of the protein. Here we show that truncation of this domain results in a monomeric enzyme with slightly enhanced catalytic efficiency. Structural alignment of the C-terminal domain indicated that it is extremely similar in its fold to APS kinase although not catalytically competent. While carrying out these structural and functional studies a surface groove was noted. Careful inspection and modeling revealed that the groove is sufficiently deep and wide, as well as properly positioned, to act as a substrate channel between the ATP sulfurylase and APS kinase-like domains of the enzyme. [References: 49]
机译:ATP硫酸化酶通过将ATP的腺苷基(与AMP类似)转移至硫酸盐以形成5'-磷酸腺苷(APS)和焦磷酸盐(PPi)来催化硫酸盐活化的第一步。随后,APS激酶介导ATP的γ-磷酸基团向APS的转移,从而形成3'-磷酸腺苷5'-磷酸硫酸盐(PAPS)和ADP。最近确定的酵母ATP硫化酶的晶体结构表明,其C末端结构域在结构上与其他结构域非常独立,对于催化活性而言并非必需。然而,似乎决定了蛋白质的低聚状态。在这里,我们显示该结构域的截短导致单体酶的催化效率略有提高。 C端结构域的结构比对表明,尽管没有催化能力,但其折叠倍数与APS激酶极为相似。在进行这些结构和功能研究时,发现了表面沟槽。仔细的检查和建模表明,凹槽足够深和宽,并且位置适当,可以充当该酶的ATP硫化酶和APS激酶样结构域之间的底物通道。 [参考:49]

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