Retinal biosynthesis in fungi:: Characterization of the carotenoid oxygenase CarX from Fusarium fujikuroi

被引:79
作者
Prado-Cabrero, Alfonso
Scherzinger, Daniel
Avalos, Javier
Al-Babili, Salim
机构
[1] Univ Freiburg, Fac Biol, D-79104 Freiburg, Germany
[2] Univ Seville, Fac Biol, Dept Genet, Seville, Spain
关键词
D O I
10.1128/EC.00392-06
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The car gene cluster of the ascomycete Fusarium fujikuroi encodes two enzymes responsible for torulene biosynthesis (CarRA and CarB), an opsin-like protein (CarO), and a putative carotenoid cleaving enzyme (CarX). It was presumed that CarX catalyzes the formation of the major carotenoid in F. fujikuroi, neurosporaxanthin, a cleavage product of torulene. However, targeted deletion of carX did not impede neurosporaxanthin biosynthesis. On the contrary, Delta carX mutants showed a significant increase in the total carotenoid content, indicating an involvement of CarX in the regulation of the pathway. In this work, we investigated the enzymatic activity of CarX. The expression of the enzyme in beta-carotene-accumulating Escherichia coli cells led to the formation of the opsin chromophore retinal. The identity of the product was proven by high-performance liquid chromatography and gas chromatography-mass spectrometry. Subsequent in vitro assays with heterologously expressed and purified CarX confirmed its beta-carotene-cleaving activity and revealed its capability to produce retinal also from other substrates, such as gamma-carotene, torullene, and beta-apo-8'-carotenal. Our data indicate that the occurrence of at least one beta-ionone ring in the substrate is required for the cleavage reaction and that the cleavage site is determined by the distance to the beta-ionone ring. CarX represents the first retinal- synthesizing enzyme reported in the fungal kingdom so far. It seems likely that the formed retinal is involved in the regulation of the carotenoid biosynthetic pathway via a negative feedback mechanism.
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页码:650 / 657
页数:8
相关论文
共 49 条
[1]  
[Anonymous], 1976, CHEM BIOCH PLANT PIG
[2]   Plant carotenoid cleavage oxygenases and their apocarotenoid products [J].
Auldridge, Michele E. ;
McCarty, Donald R. ;
Klee, Harry J. .
CURRENT OPINION IN PLANT BIOLOGY, 2006, 9 (03) :315-321
[3]  
Avalos J., 2004, Handbook of fungal biotechnology, P367
[4]  
AVALOS J, 1990, FEMS MICROBIOL LETT, V66, P295
[5]  
Avalos J., 1987, CURR GENET, V25, P1837, DOI DOI 10.1007/BF00384613
[6]   β-Carotene is converted primarily to retinoids in rats in vivo [J].
Barua, AB ;
Olson, JA .
JOURNAL OF NUTRITION, 2000, 130 (08) :1996-2001
[7]   Proteorhodopsin phototrophy in the ocean [J].
Béjà, O ;
Spudich, EN ;
Spudich, JL ;
Leclerc, M ;
DeLong, EF .
NATURE, 2001, 411 (6839) :786-789
[8]  
Bergo V, 2002, PHOTOCHEM PHOTOBIOL, V76, P341, DOI 10.1562/0031-8655(2002)076<0341:AFTISO>2.0.CO
[9]  
2
[10]   The nop-1 gene of Neurospora crassa encodes a seven transmembrane helix retinal-binding protein homologous to archaeal rhodopsins [J].
Bieszke, JA ;
Braun, EL ;
Bean, LE ;
Kang, SC ;
Natvig, DO ;
Borkovich, KA .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1999, 96 (14) :8034-8039