Structural and mechanistic insights into KslB, a bacterial Pictet–Spenglerase in kitasetaline biosynthesis†

IF 3.1 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Wantae Kim, Ziyang Zheng, Kangsan Kim, Yu-Hsuan Lee, Hung-wen Liu and Y. Jessie Zhang
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引用次数: 0

Abstract

KslB is one of the few bacterial Pictet–Spenglerases recently identified in the biosynthesis of the β-carboline compound kitasetaline. While previous in vitro studies established that KslB catalyzes the condensation between L-tryptophan and α-ketoglutarate, the reaction mechanism, particularly its stereochemistry, remains poorly understood. This study presents five crystal structures of KslB, capturing key stages of reaction, shedding light on its catalytic dynamics. Among these, alternative binding poses of substrate and reaction product highlighted two significant features: (1) an additional pocket that accommodates L-tryptophan, and (2) two positively charged residues, Lys264 and Arg256, which form salt bridges with the product C1′ and C5′ carboxylate groups derived from α-ketoglutarate, ensuring a stereoselective process. These structural insights elucidate how KslB governs the stereochemistry of the cyclization process. Accordingly, we propose the configurations for the cyclized intermediate that align with the reaction's stereochemical outcome. Together, these findings offer valuable structural and mechanistic insights into KslB, paving the way for its potential engineering as a Pictet–Spengler biocatalyst.

Abstract Image

kitasetaline生物合成中细菌picet - spengl酶KslB的结构和机制研究。
KslB是最近在β-碳碱化合物kitasetaline的生物合成中发现的少数几种细菌picet - spenglerase之一。虽然以前的体外研究证实KslB催化l-色氨酸和α-酮戊二酸之间的缩合,但其反应机制,特别是其立体化学,仍然知之甚少。本研究展示了KslB的五种晶体结构,捕捉了反应的关键阶段,揭示了其催化动力学。其中,底物和反应产物的不同结合姿态突出了两个重要特征:(1)一个额外的口袋容纳l-色氨酸;(2)两个带正电的残基Lys264和Arg256与α-酮戊二酸衍生的产物C1‘和C5’羧酸基形成盐桥,确保了立体选择过程。这些结构的见解阐明了KslB如何控制环化过程的立体化学。因此,我们提出了与反应的立体化学结果一致的环化中间体的构型。总之,这些发现为KslB的结构和机理提供了有价值的见解,为其作为Pictet-Spengler生物催化剂的潜在工程铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
6.10
自引率
0.00%
发文量
128
审稿时长
10 weeks
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