Degradation of the Photosystem II D1 and D2 proteins in different strains of the cyanobacterium Synechocystis PCC 6803 varying with respect to the type and level of psbA transcript
J. Komenda et al., Degradation of the Photosystem II D1 and D2 proteins in different strains of the cyanobacterium Synechocystis PCC 6803 varying with respect to the type and level of psbA transcript, PLANT MOL B, 42(4), 2000, pp. 635-645
The turnover of the D1 and D2 proteins of Photosystem II (PSII) has been in
vestigated by pulse-chase radiolabeling in several strains of the cyanobact
erium Synechocystis PCC 6803 containing different types and levels of the p
sbA transcript. Strains lacking psbA1 and psbA3 gene and containing high le
vels of the psbA2 transcript showed the selective synthesis of D1 whose deg
radation could be slowed down by the protein synthesis inhibitor lincomycin
. In contrast, in strains containing just the psbA3 gene, the intensity of
the D1 protein labeling was lower and labeling of the D2 and CP43 proteins
was stimulated in comparison to the psbA2-containing strains. In addition,
the rate and selectivity of the D1 degradation and its dependence on the pr
esence of lincomycin was proportional to the level of the psbA3 transcript
in the particular strain. Consequently, there was parallel, lincomycin-inde
pendent and slowed-down breakdown of the D1 and D2 proteins in strains with
the lowest level of psbA3 transcript. These results are discussed in terms
of a model in which the rate of D1 and D2 degradation in cyanobacteria is
affected not only by the rate of PSII photodamage, but also by the availabi
lity of newly synthesized D1 protein. Moreover, the comparison of the non-o
xygen-evolving D1 mutants D170A** and Y161F*** differing by the presence of
tyrosine Z has indicated a minor role of the oxidized form of this seconda
ry PSII electron donor in the donor side mechanism of D1 and D2 protein bre
akdown.