一种具有多种催化功能的番茄红素ε-环化酶ATCC 30412

IF 4.6 2区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Xing Meng , Xi Li , Ruijuan Ma , Wenjin Lin , Yiping Zou , Baobei Wang , Shih-Hsin Ho , Jianfeng Chen , Youping Xie
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引用次数: 0

摘要

由番茄红素环化酶(LCYs)催化的番茄红素环化是形成α-枝或β-枝类胡萝卜素的关键步骤。然而,LCYs的催化功能是物种特异性的。本研究对zofingiensis ATCC 30412的LCYs,包括番茄红素ε-环化酶(CzLCYE)和番茄红素β-环化酶(CzLCYB)进行了序列比对、亚细胞定位和功能鉴定。序列比对发现,CzLCYE和CzLCYB中存在多个保守基序,与其他生物的LCYs具有较高的相似性。亚细胞定位实验证实了这两种酶的叶绿体定位。在大肠杆菌中的功能互补实验表明,CzLCYB仅表现出β-环化酶活性。有趣的是,CzLCYE表现出较强的ε-单环类酶活性,中等的β-单环类酶活性和较弱的β、β-双环类酶活性,这在其他生物中是罕见的。此外,构建了CzLCYE配合物的结构,以识别底物结合口袋内的必需氨基酸残基。定点诱变实验显示TYR140、PHE321和THR337在维持CzLCYE活性中发挥重要作用,LEU236、PHE245、PHE405和LEU488在β-环形成中发挥重要作用。然而,THR205向ALA的突变增强了β, β-双环酶的活性。这些发现揭示了CzLCYE的特殊催化功能,有助于深入了解zofingiensis类胡萝卜素的生物合成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A special lycopene ε-cyclase from Chromochloris zofingiensis ATCC 30412 with multiple catalytic functions

A special lycopene ε-cyclase from Chromochloris zofingiensis ATCC 30412 with multiple catalytic functions
The cyclization of lycopene catalyzed by lycopene cyclases (LCYs) represents a pivotal step in forming α-branch or β-branch carotenoids. However, the catalytic functions of LCYs are species-specific. In this study, the LCYs of Chromochloris zofingiensis ATCC 30412, including lycopene ε-cyclase (CzLCYE) and lycopene β-cyclase (CzLCYB), were characterized by sequence alignment, subcellular localization, and function identification. The sequence alignment revealed the presence of several conserved motifs in CzLCYE and CzLCYB, exhibiting high similarity to the LCYs of other organisms. Subcellular localization experiments illustrated the chloroplast localization of these two enzymes. Functional complementation assays in Escherichia coli demonstrated that CzLCYB exhibited merely β-cyclase activity. Interestingly, CzLCYE displayed strong ε-monocyclase activity, moderate β-monocyclase activity, and weak β, β-bicyclase activity, which are rarely found in other organisms. Further, the structures of CzLCYE complexes were built to identify the essential amino acid residues within the substrate-binding pocket. Site-directed mutagenesis experiments revealed the significant roles of TYR140, PHE321, and THR337 in maintaining CzLCYE activity as well as LEU236, PHE245, PHE405, and LEU488 in β-ring formation. However, the mutation of THR205 to ALA enhanced β, β-bicyclase activity. These findings reveal the special catalytic functions of CzLCYE, contributing to a deeper understanding of carotenoid biosynthesis in C. zofingiensis.
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来源期刊
Algal Research-Biomass Biofuels and Bioproducts
Algal Research-Biomass Biofuels and Bioproducts BIOTECHNOLOGY & APPLIED MICROBIOLOGY-
CiteScore
9.40
自引率
7.80%
发文量
332
期刊介绍: Algal Research is an international phycology journal covering all areas of emerging technologies in algae biology, biomass production, cultivation, harvesting, extraction, bioproducts, biorefinery, engineering, and econometrics. Algae is defined to include cyanobacteria, microalgae, and protists and symbionts of interest in biotechnology. The journal publishes original research and reviews for the following scope: algal biology, including but not exclusive to: phylogeny, biodiversity, molecular traits, metabolic regulation, and genetic engineering, algal cultivation, e.g. phototrophic systems, heterotrophic systems, and mixotrophic systems, algal harvesting and extraction systems, biotechnology to convert algal biomass and components into biofuels and bioproducts, e.g., nutraceuticals, pharmaceuticals, animal feed, plastics, etc. algal products and their economic assessment
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