CpeR is an activator required for expression of the phycoerythrin operon (cpeBA) in the cyanobacterium Fremyella diplosiphon and is encoded in the phycoerythrin linker-polypeptide operon (cpeCDESTR)

被引:73
作者
Cobley, JG [1 ]
Clark, AC [1 ]
Weerasurya, S [1 ]
Queseda, FA [1 ]
Xiao, JY [1 ]
Bandrapali, N [1 ]
D'Silva, I [1 ]
Thounaojam, M [1 ]
Oda, JF [1 ]
Sumiyoshi, T [1 ]
Chu, MH [1 ]
机构
[1] Univ San Francisco, Dept Chem, San Francisco, CA 94117 USA
关键词
D O I
10.1046/j.1365-2958.2002.02966.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In the cyanobacteria, phycobilisomes are assembled from (alphabeta )(6) hexamers of the coloured phycobili- proteins, allophycocyanin, phycocyanin and phy-coerythrin (PE). The precise architecture of the phycobilisome is determined by the various colourless linker proteins that bind to the biliprotein hexamers. Genes for beta and alpha subunits of PE make up one operon (cpeBA ), whereas genes for PE-associated linker polypeptides are in a second operon. In the chromatically adapting cyanobacterium Fremyella diplosiphon green light is required for the transcription of both cpeBA and the operon encoding the PE-associated linkers (cpeCDE ). From the genome of F . diplosiphon we have identified an open reading frame, cpeR , which, when expressed from a shuttle plasmid, is capable of suppressing various mutations that cause a decrease in PE synthesis. The introduction of a shuttle plasmid bearing cpeR (+) into wild- type F . diplosiphon caused PE expression in red light. Fremyella diplosiphon cpeR (-) , created by in vitro mutagenesis and in vivo homologous recombination, is fully PE and, in this strain, cpeCDE is transcribed normally whereas the transcript from cpeBA is undetectable. Polymerase chain reaction (PCR) amplification of cDNA showed that cpeR is transcribed as part of the cpeCDE operon on an extended transcript. As CpeR is an activator required for expression of the cpeBA operon, we propose that at the onset of green light the operons cpeCDESTR and cpeBA are expressed in series as a genetic cascade.
引用
收藏
页码:1517 / 1531
页数:15
相关论文
共 43 条
[21]   SPECTRAL PROPERTIES OF PHYCOBILISOMES AND PHYCOBILIPROTEINS FROM BLUE-GREEN ALGA-NOSTOC-SP [J].
GRAY, BH ;
GANTT, E .
PHOTOCHEMISTRY AND PHOTOBIOLOGY, 1975, 21 (02) :121-128
[22]   THE PHYCOBILISOME, A LIGHT-HARVESTING COMPLEX RESPONSIVE TO ENVIRONMENTAL-CONDITIONS [J].
GROSSMAN, AR ;
SCHAEFER, MR ;
CHIANG, GG ;
COLLIER, JL .
MICROBIOLOGICAL REVIEWS, 1993, 57 (03) :725-749
[23]  
HERRIN DL, 1988, BIOTECHNIQUES, V6, P196
[24]   RAPID AND EFFICIENT COSMID CLONING [J].
ISHHOROWICZ, D ;
BURKE, JF .
NUCLEIC ACIDS RESEARCH, 1981, 9 (13) :2989-2998
[25]   rpbA controls transcription of the constitutive phycocyanin gene set in Fremyella diplosiphon [J].
Kahn, K ;
Schaefer, MR .
JOURNAL OF BACTERIOLOGY, 1997, 179 (24) :7695-7704
[26]   New classes of mutants in complementary chromatic adaptation provide evidence for a novel four-step phosphorelay system [J].
Kehoe, DM ;
Grossman, AR .
JOURNAL OF BACTERIOLOGY, 1997, 179 (12) :3914-3921
[27]   Similarity of a chromatic adaptation sensor to phytochrome and ethylene receptors [J].
Kehoe, DM ;
Grossman, AR .
SCIENCE, 1996, 273 (5280) :1409-1412
[28]   GREEN LIGHT INDUCES TRANSCRIPTION OF THE PHYCOERYTHRIN OPERON IN THE CYANOBACTERIUM CALOTHRIX-7601 [J].
MAZEL, D ;
GUGLIELMI, G ;
HOUMARD, J ;
SIDLER, W ;
BRYANT, DA ;
DEMARSAC, NT .
NUCLEIC ACIDS RESEARCH, 1986, 14 (21) :8279-8290
[29]   A NEW HIGH-CAPACITY COSMID VECTOR AND ITS USE [J].
MEYEROWITZ, EM ;
GUILD, GM ;
PRESTIDGE, LS ;
HOGNESS, DS .
GENE, 1980, 11 (3-4) :271-282
[30]   INFLUENCE OF LIGHT ON ACCUMULATION OF PHOTOSYNTHESIS-SPECIFIC TRANSCRIPTS IN THE CYANOBACTERIUM SYNECHOCYSTIS-6803 [J].
MOHAMED, A ;
JANSSON, C .
PLANT MOLECULAR BIOLOGY, 1989, 13 (06) :693-700