Rhodobacter sphaeroides mutants overexpressing chlorophyllide a oxidoreductase of Blastochloris viridis elucidate functions of enzymes in late bacteriochlorophyll biosynthetic pathways

Sci Rep. 2015 May 15:5:9741. doi: 10.1038/srep09741.

Abstract

In previous studies we have demonstrated that chlorophyllide a oxidoreductases (CORs) from bacteriochlorophyll (BChl) a-producing Rhodobacter species and BChl b-producing Blastochloris viridis show distinct substrate recognition and different catalytic hydrogenation reactions, and that these two types of CORs therefore cause committed steps for BChls a and b biosynthesis. In this study, COR genes from B. viridis were incorporated and overexpressed in a series of Rhodobacter sphaeroides mutants. We found that the following two factors are essential in making R. sphaeroides produce BChl b: the loss of functions of both intrinsic COR and 8-vinyl reductase (BciA) in the host R. sphaeroides strain; and expression of the BchYZ catalytic components of COR from B. viridis, not the complete set of COR (BchXYZ), in the host strain. In addition, we incorporated bchYZ of B. viridis into the R. sphaeroides mutant lacking BchJ and BciA, resulting in the strain accumulating both BChl a and BChl b. This is the first example of an anoxygenic photosynthetic bacterium producing BChls a and b together. The results suggest that BchJ enhances activity of the intrinsic COR. The physiological significance of BchJ in pigment biosynthetic pathways will be discussed.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Bacteriochlorophylls / biosynthesis*
  • Biosynthetic Pathways*
  • Chromatography, High Pressure Liquid
  • Enzyme Activation
  • Gene Expression
  • Mutation*
  • Oxygenases / genetics*
  • Oxygenases / metabolism
  • Pigments, Biological / chemistry
  • Pigments, Biological / metabolism
  • Rhodobacter sphaeroides / genetics*
  • Rhodobacter sphaeroides / metabolism*

Substances

  • Bacteriochlorophylls
  • Pigments, Biological
  • Oxygenases
  • chlorophyll a oxygenase