REDOX CONTROL OF GENE-EXPRESSION AND THE FUNCTION OF CHLOROPLAST GENOMES - AN HYPOTHESIS

被引:59
作者
ALLEN, JF
机构
[1] Plant Cell Biology, Lund University, Lund, S-220 07
关键词
CHLOROPLAST GENOME; ELECTRON TRANSPORT; EVOLUTION; GENE EXPRESSION; REDOX RESPONSE REGULATORS; REDOX SENSORS;
D O I
10.1007/BF00016274
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Two-component regulatory systems that respond to changes in redox potential have recently been discovered in bacteria. 'Redox sensors' are defined as electron carriers which initiate control of gene expression upon oxidation or reduction. 'Redox response regulators' are defined as DNA-binding proteins which modify gene expression as a result of the action of redox sensors. Redox sensors and redox response regulators may comprise a mechanism for feedback control of redox potential in photosynthetic electron transport chains, thereby protecting plants, algae and photosynthetic bacteria from damage caused by electrochemistry operating on inappropriate electron donors and acceptors. Chloroplast redox sensors and redox response regulators, themselves encoded in the nucleus, may place chloroplast gene expression under redox regulatory control. This may account for the persistence, in evolution, of chloroplast genomes, and for the constancy of the sub-set of chloroplast proteins encoded and synthesised in situ. These and other predictions are discussed.
引用
收藏
页码:95 / 102
页数:8
相关论文
共 41 条
[1]   CHLOROPLAST PROTEIN-PHOSPHORYLATION COUPLES PLASTOQUINONE REDOX STATE TO DISTRIBUTION OF EXCITATION-ENERGY BETWEEN PHOTOSYSTEMS [J].
ALLEN, JF ;
BENNETT, J ;
STEINBACK, KE ;
ARNTZEN, CJ .
NATURE, 1981, 291 (5810) :25-29
[2]   REGULATION OF PHOTOSYNTHETIC PHOSPHORYLATION [J].
ALLEN, JF .
CRC CRITICAL REVIEWS IN PLANT SCIENCES, 1983, 1 (01) :1-22
[3]   PROTEIN-PHOSPHORYLATION IN REGULATION OF PHOTOSYNTHESIS [J].
ALLEN, JF .
BIOCHIMICA ET BIOPHYSICA ACTA, 1992, 1098 (03) :275-335
[4]   REGULATION OF FERREDOXIN-CATALYZED PHOTOSYNTHETIC PHOSPHORYLATIONS [J].
ARNON, DI ;
CHAIN, RK .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1975, 72 (12) :4961-4965
[5]  
Cavalier- Smith T, 1981, SOC GEN MICROBIOL S, V32, P33
[7]   THE ORIGIN OF EUKARYOTE AND ARCHAEBACTERIAL CELLS [J].
CAVALIERSMITH, T .
ANNALS OF THE NEW YORK ACADEMY OF SCIENCES, 1987, 503 :17-54
[8]  
Cramer W. A., 1990, ENERGY TRANSDUCTION
[9]  
ERICKSON JM, 1992, PHOTOSYSTEMS STRUCTU, P101
[10]  
GAL A, 1990, J BIOL CHEM, V265, P19742