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Nucleotide sequence and expression of the two genes encoding D2 protein and the single gene encoding the CP43 protein of Photosystem II in the cyanobacterium synechococcus sp. PCC 7002
Authors:Jeffrey C. Gingrich  Gail E. Gasparich  Kenneth Sauer  Donald A. Bryant
Affiliation:(1) Chemical Biodynamics Division, Lawrence Berkeley Laboratory, University of California, 94720 Berkeley, CA, USA;(2) Department of Molecular and Cell Biology, The Pennsylvania State University, 16802 University Park, PA, USA;(3) Present address: Human Genome Center, Bldg. 74323, Lawrence Berkeley Laboratory, University of California, 94720 Berkeley, CA, USA
Abstract:The unicellular photoheterotrophic cyanobacterium Synechococcus sp. PCC 7002 was shown to encode two genes for the Photosystem II reaction center core protein D2 and one gene for the reaction center chlorophyhll-binding protein CP43. These three genes were cloned and their DNA sequences determined along with their flanking DNA sequences. Northern hybridization experiments show that both genes which encode D2, psbD1 and psbD2, are expressed at roughly equivalent levels. For each of the two psbD genes, there are 18 nucleotide differences among the 1059 nucleotides which are translated. The DNA sequences surrounding the coding sequences are nearly 70% divergent. Despite the DNA sequence differences in the genes, the proteins encoded by the two genes are predicted to be identical. The proteins encoded by psbD1 and psbD2 are sim92% homologous to other sequenced cyanobacterial psbD genes and sim86% homologous to sequenced chloroplast-encoded psbD genes.The single gene for CP43, psbC, overlaps the 3prime end of psbD1 and is co-transcribed with it. Results from previous sequencing of psbC genes encoded by chloroplasts suggest that the 5prime end of the psbC gene overlaps the 3prime end of the coding sequence of psbD by sim50 nucleotides. In Synechococcus sp. PCC 7002, the methionine codon previously proposed to be the start codon for psbC is replaced by an ACG (threonine) codon. We propose an alternative start for the psbC gene at a GTG codon 36 nucleotides downstream from the threonine codon. This GTG codon is preceded by a consensus E. coli-like ribosome binding sequence. Both the GTG start codon and its preceding ribosome binding sequence are conserved in all psbC genes sequenced from cyanobacteria and chloroplasts. This suggests that all psbC genes start at this alternative GTG codon. Based on this alternative start codon, the gene product is sim85% identical to other cyanobacterial psbC gene products and sim77% identical to eucaryotic chloroplast-encoded psbC gene products.
Keywords:cyanobacteria  photosynthesis  psbC gene  psbD gene  translational start codon  overlapping genes
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