RRC ID 20862
著者 Cunningham FX Jr, Lee H, Gantt E.
タイトル Carotenoid biosynthesis in the primitive red alga Cyanidioschyzon merolae.
ジャーナル Eukaryot Cell
Abstract Cyanidioschyzon merolae is considered to be one of the most primitive of eukaryotic photosynthetic organisms. To obtain insights into the origin and evolution of the pathway of carotenoid biosynthesis in eukaryotic plants, the carotenoid content of C. merolae was ascertained, genes encoding enzymes of carotenoid biosynthesis in this unicellular red alga were identified, and the activities of two candidate pathway enzymes of particular interest, lycopene cyclase and beta-carotene hydroxylase, were examined. C. merolae contains perhaps the simplest assortment of chlorophylls and carotenoids found in any eukaryotic photosynthetic organism: chlorophyll a, beta-carotene, and zeaxanthin. Carotenoids with epsilon-rings (e.g., lutein), found in many other red algae and in green algae and land plants, were not detected, and the lycopene cyclase of C. merolae quite specifically produced only beta-ringed carotenoids when provided with lycopene as the substrate in Escherichia coli. Lycopene beta-ring cyclases from several bacteria, cyanobacteria, and land plants also proved to be high-fidelity enzymes, whereas the structurally related epsilon-ring cyclases from several plant species were found to be less specific, yielding products with beta-rings as well as epsilon-rings. C. merolae lacks orthologs of genes that encode the two types of beta-carotene hydroxylase found in land plants, one a nonheme diiron oxygenase and the other a cytochrome P450. A C. merolae chloroplast gene specifies a polypeptide similar to members of a third class of beta-carotene hydroxylases, common in cyanobacteria, but this gene did not produce an active enzyme when expressed in E. coli. The identity of the C. merolae beta-carotene hydroxylase therefore remains uncertain.
巻・号 6(3)
ページ 533-45
公開日 2007-3-1
DOI 10.1128/EC.00265-06
PII EC.00265-06
PMID 17085635
PMC PMC1828917
MeSH Amino Acid Sequence Carotenoids / biosynthesis* Carotenoids / metabolism Chlorophyll / metabolism Cyanobacteria / enzymology Cyanobacteria / metabolism Evolution, Molecular Genes, Bacterial / genetics Genes, Plant / genetics Intramolecular Lyases / genetics Intramolecular Lyases / metabolism Lycopene Mixed Function Oxygenases / genetics* Mixed Function Oxygenases / metabolism Photosynthesis / genetics Photosynthesis / physiology* Phylogeny Rhodophyta / physiology* Sequence Homology, Amino Acid Xanthophylls Zeaxanthins beta Carotene / biosynthesis
IF 2.992
引用数 49
WOS 分野 MYCOLOGY MICROBIOLOGY
リソース情報
藻類 NIES-1332