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The crystal structure of spermidine synthase with a multisubstrate adduct inhibitor

机译:亚精胺合酶与多底物加合物抑制剂的晶体结构

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摘要

Polyamines are essential in all branches of life. Spermidine synthase (putrescine aminopropyltransferase, PAPT) catalyzes the biosynthesis of spermidine, a ubiquitous polyamine. The crystal structure of the PAPT from Thermotoga maritima (TmPAPT) has been solved to 1.5 Å resolution in the presence and absence of AdoDATO (S-adenosyl-1,8-diamino-3-thiooctane), a compound containing both substrate and product moieties. This, the first structure of an aminopropyltransferase, reveals deep cavities for binding substrate and cofactor, and a loop that envelops the active site. The AdoDATO binding site is lined with residues conserved in PAPT enzymes from bacteria to humans, suggesting a universal catalytic mechanism. Other conserved residues act sterically to provide a structural basis for polyamine specificity. The enzyme is tetrameric; each monomer consists of a C-terminal domain with a Rossmann-like fold and an N-terminal β-stranded domain. The tetramer is assembled using a novel barrel-type oligomerization motif.
机译:多胺在生活的所有分支中都是必不可少的。亚精胺合酶(putrescine氨丙基转移酶,PAPT)催化无处不在的多胺亚精胺的生物合成。在存在和不存在AdoDATO(S-腺苷-1,8-二氨基-3-硫辛烷)的情况下(存在底物和产物部分的化合物),已将来自马氏热球菌(PAM)的PAPT的晶体结构解析为1.5Å分辨率。 。这是氨基丙基转移酶的第一个结构,揭示了用于结合底物和辅因子的深腔,以及一个包围活性位点的环。 AdoDATO结合位点衬有从细菌到人类的PAPT酶中保守的残基,表明了普遍的催化机制。其他保守残基在空间上起作用,为多胺特异性提供结构基础。酶是四聚体;每个单体由一个具有Rossmann样折叠的C末端结构域和一个N末端β链结构域组成。使用新型的桶型低聚基序组装四聚体。

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