Substrates, intermediates, and products of avian ketocarotenoid metabolism

IF 3.9 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Matthew B. Toomey , Rebecca E. Koch , Yu Liu , Johannes von Lintig , Joseph C. Corbo , Geoffrey E. Hill , Yufeng Zhang
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引用次数: 0

Abstract

Carotenoid-based coloration is an essential feature of avian diversity and has important roles in communication and mate choice. The red feathers of birds from phylogenetically diverse orders and families are pigmented with C4-ketocarotenoids produced via the successive action of Cytochrome P450 2J19 (CYP2J19) and 3-hydroxybutyrate dehydrogenase 1-like (BDH1L) on yellow dietary precursors. Yet, the biochemistry of these enzymes remains incompletely understood. Here we present a series of experiments characterizing the substrates, intermediates, and products of CYP2J19 and BDH1L expressed in heterologous cell culture. We confirm that CYP2J19 preferentially hydroxylates the 4 and 4′ positions of β-ring substrates, but can also hydroxylate the 3 and 3 positions of C4-ketocarotenoids. We confirm that BDH1L catalyzes the conversion of zeaxanthin to canary xanthophyll B (ε,ε’-carotene-3,3′-dione) a major pigment in plumage of many yellow bird species. These results suggest that the actions of CYP2J19 and/or BDH1L can explain the presence of many metabolically transformed carotenoids in avian tissues.
禽类酮胡萝卜素代谢的底物、中间体和产物。
以类胡萝卜素为基础的着色是鸟类多样性的基本特征,在交流和配偶选择中起着重要作用。系统发育不同目和科的鸟类的红色羽毛是由细胞色素P450 2 J19 (CYP2J19)和3-羟基丁酸脱氢酶1样(BDH1L)对黄色膳食前体的连续作用而产生的c4 -类酮胡萝卜素着色的。然而,这些酶的生物化学原理仍然不完全清楚。在这里,我们提出了一系列的实验表征底物,中间体和产物的CYP2J19和BDH1L在异源细胞培养表达。我们证实CYP2J19优先羟基化β-环底物的4和4‘位置,但也可以羟基化c4 -酮类胡萝卜素的3和3’位置。我们证实BDH1L可以催化玉米黄质转化为金丝雀叶黄素B (ε,ε′-胡萝卜素-3,3′-二酮),这是许多黄鸟羽毛中的主要色素。这些结果表明CYP2J19和/或BDH1L的作用可以解释鸟类组织中代谢转化的许多类胡萝卜素的存在。
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来源期刊
CiteScore
11.00
自引率
2.10%
发文量
109
审稿时长
53 days
期刊介绍: BBA Molecular and Cell Biology of Lipids publishes papers on original research dealing with novel aspects of molecular genetics related to the lipidome, the biosynthesis of lipids, the role of lipids in cells and whole organisms, the regulation of lipid metabolism and function, and lipidomics in all organisms. Manuscripts should significantly advance the understanding of the molecular mechanisms underlying biological processes in which lipids are involved. Papers detailing novel methodology must report significant biochemical, molecular, or functional insight in the area of lipids.
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