Affiliation:
1. Robert Hill Institute for Photosynthesis and Krebs Institute for Biomolecular Research, Department of Molecular Biology and Biotechnology, University of Sheffield, Sheffield, United Kingdom
Abstract
ABSTRACT
The
bchP
gene product of
Rhodobacter sphaeroides
is responsible for the reduction of the isoprenoid moiety of bacteriochlorophyll (Bchl) from geranylgeraniol (GG) to phytol; here, we show that this enzyme also catalyzes the reduction of the isoprenoid moiety of bacteriopheophytin (Bphe). In contrast, we demonstrate that a newly identified homolog of this gene in
Rhodospirillum rubrum
encodes an enzyme, GG-Bphe reductase, capable of reducing the isoprenoid moiety of Bphe only. We propose that
Rhodospirillum rubrum
is a naturally occurring
bchP
mutant and that an insertion mutation may have been the initial cause of a partial loss of function. Normal BchP function can be restored to
Rhodospirillum rubrum
, creating a new transconjugant strain possessing Bchl esterified with phytol. We speculate on the requirement of
Rhodospirillum rubrum
for phytylated Bphe and on a potential link between the absence of LH2 and of phytylated Bchl from the wild-type bacterium. The identification of a second role for the fully functional BchP in catalyzing the synthesis of phytylated Bphe strongly suggests that homologs of this enzyme may be similarly responsible for the synthesis of phytylated pheophytin in organisms possessing photosystem 2. In addition to
bchP
, other members of a photosynthesis gene cluster were identified in
Rhodospirillum rubrum
, including a
bchG
gene, demonstrated to encode a functional Bchl synthetase by complementation of a
Rhodobacter sphaeroides
mutant.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Reference40 articles.
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