Skip to main content
Log in

Characterization of chloroplast psbA transformants of Chlamydomonas reinhardtii with impaired processing of a precursor of a photosystem II reaction center protein, D1

  • Published:
Plant Molecular Biology Aims and scope Submit manuscript

Abstract

One of the photosystem II reaction center proteins, D1, is encoded by the psbA gene and is synthesized as a precursor form with a carboxyl-terminal extension that is subsequently cleaved between Ala-344 and Ser-345. We have generated three psbA transformants of the green alga Chlamydomonas reinhardtii in which Ala-344 or Ser-345 have been substituted with Pro or Glu (A344P, S345E, and S345P) to understand the effects of the amino acid substitutions on the processing of the precursor D1. S345E grew photoautotrophically and showed PSII activity like the wild type. However, A344P and S345P were unable to grow photoautotrophically and were significantly photosensitive. A344P was deficient in the processing of precursor D1 and in oxygen-evolving activity, but assembled photosystem II complex capable of charge separation. In contrast, both precursor and mature forms of D1 accumulated in S345P cells from the logarithmic phase and the cells evolved oxygen at 18% of wild-type level. However, S345P cells from the stationary phase contained mostly the mature D1 and showed a twofold increase in oxygen-evolving activity. The rate of processing of the accumulated pD1 was estimated to be about 100 times slower than in the wild type. It is therefore concluded that the functional oxygen-evolving complex is assembled when the precursor D1 is processed, albeit at a very low rate. These results suggest the functional significance of the amino acid residues at the processing site of the precursor D1.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Similar content being viewed by others

References

  • Adir, N., Shochat, S. and Ohad, I. 1990. Light-dependent D1 protein synthesis and translocation is regulated by reaction center II. J. Biol. Chem. 265: 12563–12568.

    Google Scholar 

  • Chua, N.-H. and Bennoun, P. 1975. Thylakoid membrane polypeptides of Chlamydomonas reinhardtii: wild-type and mutant strains deficient in photosystem II reaction center. Proc. Natl. Acad. Sci. USA 72: 2175–2179.

    Google Scholar 

  • Diner, B.A., Ries, D.F., Cohen, B.N. and Metz, J.G. 1988. COOHterminal processing of polypeptide D1 of the photosystem II reaction center of Scenedesmus obliquus is necessary for the assembly of the oxygen-evolving complex. J. Biol. Chem. 263: 8972–8980.

    Google Scholar 

  • Ellis, R.J. 1981. Chloroplast proteins: synthesis, transport, and assembly. Annu. Rev. Plant Physiol. 32: 111–137.

    Google Scholar 

  • Gorman, D.S. and Levine, R.P. 1965. Cytochrome f and plastocyanin: their sequence in the photosynthetic electron transport chain of Chlamydomonas reinhardtii. Proc. Natl. Acad. Sci. USA 54: 1665–1669.

    Google Scholar 

  • Herrin, D. and Michaels, A. 1985. The chloroplast 32 kDa protein is synthesized on thylakoid-bound ribosomes in Chlamydomonas reinhardtii. FEBS Lett. 184: 90–95.

    Google Scholar 

  • Kanervo, E., Tasaka, Y., Murata, N. and Aro, E-.M. 1997. Membrane lipid unsaturation modulates processing of the photosystem II reaction-center protein D1 at low temperature. Plant Physiol. 114: 841–849.

    Google Scholar 

  • Künstner, P., Guardiola, A., Takahashi, Y. and Rochaix, J.-D. 1995. A mutant strain of Chlamydomonas reinhardtii lacking the chloroplast photosystem II psbI gene grows photoautotrophically. J. Biol. Chem. 270: 9651–9654.

    Google Scholar 

  • Laemmli, U.K. 1970. Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature 227: 680–685.

    Google Scholar 

  • Lers, A., Heifetz, P.B., Boynton, J.E., Gillham, N.W. and Osmond, C.B. 1992. The carboxyl-terminal extension of the D1 protein of photosystem II is not required for optimal photosynthetic performance under CO2-and light-saturated growth conditions. J. Biol. Chem. 267: 17494–17497.

    Google Scholar 

  • Mattoo, A.K., Marder, J.B. and Edelman, M. 1989. Dynamics of the photosystem II reaction center. Cell 56: 241–246.

    Google Scholar 

  • Nanba, O. and Satoh, K. 1987. Isolation of a photosystem II reaction center consisting of D-1 and D-2 polypeptides and cytochrome b-559. Proc. Natl. Acad. Sci. USA 84: 109–112.

    Google Scholar 

  • Nixon, P.J., Rögner, M. and Diner, B.A. 1991. Expression of a higher plant psbA gene in Synechocystis 6803 yields a functional hybrid photosystem II reaction center complex. Plant Cell 3: 383–395.

    Google Scholar 

  • Nixon, P.J., Trost, J.T. and Diner, B.A. 1992. Role of the carboxyl terminus of polypeptide D1 in the assembly of a functional water-oxidizing manganese cluster in photosystem II of the cyanobacterium Synechocystis sp. PCC 6803: assembly requires a free carboxyl group at C-terminal position 344. Biochemistry 31: 10859–10871.

    Google Scholar 

  • Niyogi, K.K. 1999. Photoprotection revisited: genetic and molecular approaches. Annu. Rev. Plant Physiol. Plant Mol. Biol. 50: 333–359.

    Google Scholar 

  • Ono, T. and Inoue, Y. 1983. Mn-preserving extraction of 33-kDa, 24-kDa and 16-kDa proteins from O2-evolving PS-II particles by divalent salt-washing. FEBS Lett. 164: 255–260.

    Google Scholar 

  • Ono, T. and Inoue, Y. 1986. Effects of removal and reconstitution of the extrinsic 33, 24, and 16 kDa proteins on flash oxygen yield in photosystem II particles. Biochim. Biophys. Acta 850: 380–389.

    Google Scholar 

  • Ono, T. and Inoue, Y. 1991. Biochemical evidence for histidine oxidation in photosystem II depleted of the Mn-cluster for O2-evolution. FEBS Lett. 278: 183–186.

    Google Scholar 

  • Porra, R.J., Thompson, W.A. and Kriedemann, P.E. 1989. Determination of accurate extinction coefficients and simultaneous equations for assaying chlorophylls a and b extracted with four different solvents: verification of the concentration of chlorophyll standards by atomic absorption spectroscopy. Biochim. Biophys. Acta 975: 384–394.

    Google Scholar 

  • Roffey, R.A., Kramer, D.M., Govindjee and Sayre, R.T. 1994. Lumenal side histidine mutations in the D1 protein of Photosystem II affect donor side electron transfer in Chlamydomonas reinhardtii. Biochim. Biophys. Acta 1185: 257–270.

    Google Scholar 

  • Rutherford, A.W., Crofts, A.R. and Inoue, Y. 1982. Thermoluminescence as a probe of photosystem II photochemistry: the origin of the flash-induced glow peaks. Biochim. Biophys. Acta 682: 457–465.

    Google Scholar 

  • Rutherford, A.W., Seibert, M. and Metz, J.G. 1988.Characterization of the low-fluorescent (LF1) mutant of Scenedesmus by EPR. Biochim. Biophys. Acta 932: 171–176.

    Google Scholar 

  • Schrader, S. and Johanningmeier, U. 1992. The carboxyl-terminal extension of the D1-precursor protein is dispensable for a functional photosystem II complex in Chlamydomonas reinhardtii. Plant Mol. Biol. 19: 251–256.

    Google Scholar 

  • Shestakov, S.V., Anbudurai, P.R., Stanbekova, G.E., Gadzhiev, A., Lind, L.K. and Pakrasi, H.B. 1994. Molecular cloning and characterization of the ctpA gene encoding a carboxyl-terminal processing protease. Analysis of a spontaneous photosystem IIdeficient mutant of the cyanobacterium Synechocystis sp. PCC 6803. J. Biol. Chem. 269: 19354–19359.

    Google Scholar 

  • Svensson, B., Vass, I. and Styring, S. 1991. Sequence analysis of the D1 and D2 reaction center proteins of photosystem II. Z. Naturforsch. 46c: 767–776.

    Google Scholar 

  • Taguchi, F., Takahashi, Y. and Satoh, K. 1998. Viability of Chlamydomonas mutants with amino acid substitution in the precursor D1 protein at the carboxyl-terminal processing site: an analysis by mixed-culture growth experiments. Plant Cell Physiol. 39: 1324–1329.

    Google Scholar 

  • Takahashi, Y. 1998. Chloroplast-encoded small subunits of the three multiprotein complexes in photosynthetic electron transport. J. Plant Res. 111: 101–111.

    Google Scholar 

  • Takahashi, M., Shiraishi, T. and Asada, K. 1989a. COOH-terminal residues of D1 and the 44 kDa CPa-2 at spinach photosystem II core complex. FEBS Lett. 240: 6–8.

    Google Scholar 

  • Takahashi, Y., Nakane, H., Kojima, H. and Satoh, K. 1989b. Chromatographic purification and determination of the carboxylterminal sequences of photosystem II reaction center proteins, D1 and D2. Plant Cell Physiol. 31: 273–280.

    Google Scholar 

  • Takahashi, Y., Matsumoto, H., Goldschmidt-Clermont, M. and Rochaix, J.-D. 1994. Directed disruption of the Chlamydomonas chloroplast psbK gene destabilizes the photosystem II reaction center complex. Plant Mol. Biol. 24: 779–788.

    Google Scholar 

  • Takahashi, Y., Utsumi, K., Yamamoto, Y., Hatano, A. and Satoh, K. 1996. Genetic engineering of the processing site of D1 precursor protein of photosystem II reaction center in Chlamydomonas reinhardtii. Plant Cell Physiol. 37: 161–168.

    Google Scholar 

  • Taylor, M.A., Packer, J.C.L. and Bowyer, J.R. 1988. Processing of the D1 polypeptide of the photosystem II reaction centre and photoactivation of a low fluorescence mutant (LF-1) of Scenedesmus obliquus. FEBS Lett. 237: 229–233.

    Google Scholar 

  • Wakasugi, T., Nagai, T., Kapoor, M., Sugita, M., Ito, M., Ito, S., Tsuzuki, J., Nakashima, K., Tsudzuki, T., Suzuki, Y., Hamada, A., Ohta, T., Inamura, A., Yoshinaga, K. and Sugiura, M. 1997. Complete nucleotide sequence of the chloroplast genome from the green alga Chlorella vulgaris: the existence of genes possibly involved in chloroplast division. Proc. Natl. Acad. Soc. USA 94: 5967–5972.

    Google Scholar 

  • Weeks, D.P., Beerman, N. and Griffith, O.M. 1986. A small-scale five-hour procedure for isolating multiple samples of CsC1-purified DNA: application to isolations from mammalian, insect, higher plant, algal, yeast, and bacterial sources. Anal. Biochem. 152: 376–385.

    Google Scholar 

  • van Wijk, K.J., Andersson, B. and Aro, E.-M 1996. Kinetic resolution of the incorporation of the D1 protein into photosystem II and localization of assembly intermediates in thylakoid membranes of spinach chloroplasts. J. Biol. Chem. 271: 9627–9636.

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Rights and permissions

Reprints and permissions

About this article

Cite this article

Hatano-Iwasaki, A., Minagawa, J., Inoue, Y. et al. Characterization of chloroplast psbA transformants of Chlamydomonas reinhardtii with impaired processing of a precursor of a photosystem II reaction center protein, D1. Plant Mol Biol 42, 353–363 (2000). https://doi.org/10.1023/A:1006377614863

Download citation

  • Issue Date:

  • DOI: https://doi.org/10.1023/A:1006377614863

Navigation