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首页> 外文期刊>Journal of Molecular Biology >Structure and catalytic mechanism of a cyclic dipeptide prenyltransferase with broad substrate promiscuity
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Structure and catalytic mechanism of a cyclic dipeptide prenyltransferase with broad substrate promiscuity

机译:具有广泛底物混杂性的环状二肽异戊烯基转移酶的结构和催化机理

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Fungal indole prenyltransferases (PTs) typically act on specific substrates, and they are able to prenylate their target compounds with remarkably high regio- and stereoselectivity. Similar to several indole PTs characterized to date, the cyclic dipeptide N-prenyltransferase (CdpNPT) is able to prenylate a range of diverse substrates, thus exhibiting an unusually broad substrate promiscuity. To define the structural basis for this promiscuity, we have determined crystal structures of unliganded CdpNPT and of a ternary complex of CdpNPT bound to (S)-benzodiazepinedione and thiolodiphosphate. Analysis of the structures reveals a limited number of specific interactions with (S)-benzodiazepinedione, which projects into a largely hydrophobic surface. This surface can also accommodate other substrates, explaining the ability of the enzyme to prenylate a range of compounds. The location of the bound substrates suggests a likely reaction mechanism for the conversion of (S)- benzodiazepinedione. Structure-guided mutagenesis experiments confirm that, in addition to (S)-benzodiazepinedione, CdpNPT can also act on (R)- benzodiazepinedione and several cyclic dipeptides, albeit with relaxed specificity. Finally, nuclear magnetic resonance spectroscopy demonstrates that CdpNPT is a C-3 reverse PT that catalyzes the formation of C-3β prenylated indolines from diketopiperazines of tryptophan-containing cyclic dipeptides.
机译:真菌吲哚异戊二烯基转移酶(PTs)通常作用于特定的底物,并且能够以极高的区域和立体选择性将其目标化合物进行异戊烯基化。与迄今已表征的几种吲哚PT相似,环状二肽N-异戊二烯基转移酶(CdpNPT)能够使多种底物异戊二烯基化,因此表现出异常宽泛的底物混杂性。为了定义这种混杂的结构基础,我们确定了未配位的CdpNPT以及与(S)-苯并二氮杂二酮和硫代二磷酸结合的CdpNPT三元复合物的晶体结构。结构分析显示与(S)-苯并二氮杂二酮的特定数量有限的相互作用,该相互作用伸入大部分疏水的表面。该表面还可以容纳其他底物,这说明了酶使一系列化合物进行异戊酸酯化的能力。结合的底物的位置表明了(S)-苯并二氮杂二酮转化的可能的反应机理。结构指导的诱变实验证实,除了(S)-苯并二氮杂二酮之外,CdpNPT还可以作用于(R)-苯并二氮杂二酮和一些环状二肽,尽管具有宽松的特异性。最后,核磁共振波谱证明CdpNPT是一种C-3反向PT,它催化从含色氨酸的环状二肽的二酮哌嗪形成C-3β戊烯基二氢吲哚。

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