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PddB的分子与机制特性研究,PddB是在放线菌D-氨基酸同聚物生物合成中发现的首个不依赖磷酸吡哆醛的2,4-二氨基丁酸消旋酶

Molecular and Mechanistic Characterization of PddB, the First PLP-Independent 2,4-Diaminobutyric Acid Racemase Discovered in an Actinobacterial D-Amino Acid Homopolymer Biosynthesis.

作者信息

Yamanaka Kazuya, Ozaki Ryo, Hamano Yoshimitsu, Oikawa Tadao

机构信息

Department of Life Science and Technology, Faculty of Chemistry, Materials, and Bioengineering, Kansai University, Suita, Japan.

Graduate School of Science and Engineering, Kansai University, Suita, Japan.

出版信息

Front Microbiol. 2021 Jun 10;12:686023. doi: 10.3389/fmicb.2021.686023. eCollection 2021.

Abstract

We recently disclosed that the biosynthesis of antiviral γ-poly-D-2,4-diaminobutyric acid (poly-D-Dab) in involves an unprecedented cofactor independent stereoinversion of Dab catalyzed by PddB, which shows weak homology to diaminopimelate epimerase (DapF). Enzymological properties and mechanistic details of this enzyme, however, had remained to be elucidated. Here, through a series of biochemical characterizations, structural modeling, and site-directed mutageneses, we fully illustrate the first Dab-specific PLP-independent racemase PddB and further provide an insight into its evolution. The activity of the recombinant PddB was shown to be optimal around pH 8.5, and its other fundamental properties resembled those of typical PLP-independent racemases/epimerases. The enzyme catalyzed Dab specific stereoinversion with a calculated equilibrium constant of nearly unity, demonstrating that the reaction catalyzed by PddB is indeed racemization. Its activity was inhibited upon incubation with sulfhydryl reagents, and the site-directed substitution of two putative catalytic Cys residues led to the abolishment of the activity. These observations provided critical evidence that PddB employs the thiolate-thiol pair to catalyze interconversion of Dab isomers. Despite the low levels of sequence similarity, a phylogenetic analysis of PddB indicated its particular relevance to DapF among PLP-independent racemases/epimerases. Secondary structure prediction and 3D structural modeling of PddB revealed its remarkable conformational analogy to DapF, which in turn allowed us to predict amino acid residues potentially responsible for the discrimination of structural difference between diaminopimelate and its specific substrate, Dab. Further, PddB homologs which seemed to be narrowly distributed only in actinobacterial kingdom were constantly encoded adjacent to the putative poly-D-Dab synthetase gene. These observations strongly suggested that PddB could have evolved from the primary metabolic DapF in order to organize the biosynthesis pathway for the particular secondary metabolite, poly-D-Dab. The present study is on the first molecular characterization of PLP-independent Dab racemase and provides insights that could contribute to further discovery of unprecedented PLP-independent racemases.

摘要

我们最近披露,在[具体生物]中抗病毒γ-聚-D-2,4-二氨基丁酸(聚-D-Dab)的生物合成涉及一种前所未有的由PddB催化的Dab辅因子非依赖性立体异构化,PddB与二氨基庚二酸差向异构酶(DapF)具有较弱的同源性。然而,该酶的酶学性质和作用机制细节仍有待阐明。在此,通过一系列生化特性分析、结构建模和定点诱变,我们全面阐述了首个Dab特异性的不依赖磷酸吡哆醛(PLP)的消旋酶PddB,并进一步深入了解了其进化过程。重组PddB的活性在pH 8.5左右表现最佳,其其他基本特性与典型的不依赖PLP的消旋酶/差向异构酶相似。该酶催化Dab特异性立体异构化,计算得到的平衡常数接近1,表明PddB催化的反应确实是外消旋化。与巯基试剂孵育后其活性受到抑制,两个推定的催化半胱氨酸残基的定点取代导致活性丧失。这些观察结果提供了关键证据,表明PddB利用硫醇盐-硫醇对催化Dab异构体的相互转化。尽管序列相似性水平较低,但对PddB的系统发育分析表明,在不依赖PLP的消旋酶/差向异构酶中,它与DapF具有特殊的相关性。PddB的二级结构预测和三维结构建模显示其与DapF具有显著的构象相似性,这反过来使我们能够预测可能负责区分二氨基庚二酸及其特定底物Dab结构差异的氨基酸残基。此外,似乎仅在放线菌纲中狭窄分布的PddB同源物始终与推定的聚-D-Dab合成酶基因相邻编码。这些观察结果强烈表明,PddB可能从初级代谢的DapF进化而来,以构建特定次级代谢产物聚-D-Dab的生物合成途径。本研究是对不依赖PLP的Dab消旋酶的首次分子表征,并提供了有助于进一步发现前所未有的不依赖PLP的消旋酶的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e380/8225329/8c9fd33e8584/fmicb-12-686023-g001.jpg

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