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Microbiology
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- MicrobiologyOpen Access
A paralog of a bacteriochlorophyll biosynthesis enzyme catalyzes the formation of 1,2-dihydrocarotenoids in green sulfur bacteria
Journal of Biological ChemistryVol. 293Issue 39p15233–15242Published online: August 20, 2018- Daniel P. Canniffe
- Jennifer L. Thweatt
- Aline Gomez Maqueo Chew
- C. Neil Hunter
- Donald A. Bryant
Cited in Scopus: 6Chlorobaculum tepidum, a green sulfur bacterium, utilizes chlorobactene as its major carotenoid, and this organism also accumulates a reduced form of this monocyclic pigment, 1′,2′-dihydrochlorobactene. The protein catalyzing this reduction is the last unidentified enzyme in the biosynthetic pathways for all of the green sulfur bacterial pigments used for photosynthesis. The genome of C. tepidum contains two paralogous genes encoding members of the FixC family of flavoproteins: bchP, which has been shown to encode an enzyme of bacteriochlorophyll biosynthesis; and bchO, for which a function has not been assigned.