Protochlorophyllide oxidoreductase B-catalyzed protochlorophyllide photoreduction in vitro : Insight into the mechanism of chlorophyll formation in light-adapted plants
- 17 August 1999
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 96 (17) , 9954-9959
- https://doi.org/10.1073/pnas.96.17.9954
Abstract
The mechanism of the protochlorophyllide (PChlide) photoreduction reaction operating in light-adapted plants and catalyzed by NADPH:protochlorophyllide oxidoreductase B (PORb) has been analyzed by low-temperature fluorescence spectroscopy by using purified barley PORb overexpressed heterologously in Escherichia coli as a fusion protein with the maltose-binding protein. We show that the PORb-catalyzed PChlide reduction reaction consists of two steps, one photochemical and the other nonphotochemical. The initial photochemical reaction follows a single quantum mechanism and leads to the formation of an unstable intermediate with mixed pigment electronic structure and an EPR spectrum that suggests the presence of a free electron. The second step involves the spontaneous conversion of the unstable intermediate into chlorophyllide as defined by its spectroscopic characteristics and migration on an HPLC column. Both steps of the reaction can be performed at subzero temperatures in frozen samples, suggesting that they do not include major changes in enzyme conformation or pigment rearrangement within the active site. The rate of the reaction at room temperature depends linearly on enzyme and substrate (PChlide) concentration, and the kinetic parameters are consistent with one molecule of substrate bound per active monomer in solution. The PORb-catalyzed reaction in vitro is spectroscopically similar to that identified in leaves of light-adapted plants, suggesting that the same reaction sequence observed operates in planta .Keywords
This publication has 25 references indexed in Scilit:
- Etioplast Differentiation in Arabidopsis: Both PORA and PORB Restore the Prolamellar Body and Photoactive Protochlorophyllide–F655 to the cop1 Photomorphogenic MutantPlant Cell, 1998
- Room temperature fluorescence spectra of protochlorophyllide and chlorophyllide forms in etiolated bean leavesJournal of Photochemistry and Photobiology B: Biology, 1997
- With chlorophyll pigments from prolamellar bodies to light‐harvesting complexesPhysiologia Plantarum, 1997
- Structure of a Protein Photocycle Intermediate by Millisecond Time-Resolved CrystallographyScience, 1997
- The light intensity dependence of protochlorophyllide photoconversion and its significance to the catalytic mechanism of protochlorophyllide reductaseFEBS Letters, 1996
- Chlorophyll Synthesis in a Deetiolated (det340) Mutant of Arabidopsis without NADPH-Protochlorophyllide (PChlide) Oxidoreductase (POR) A and Photoactive PChlide-F655.Plant Cell, 1995
- Chlorophyll Synthesis in a Deetiolated (det340) Mutant of Arabidopsis without NADPH-Protochlorophyllide (PChlide) Oxidoreductase (POR) A and Photoactive PChlide-F655Plant Cell, 1995
- Identification of NADPH:Protochlorophyllide Oxidoreductases A and B: A Branched Pathway for Light-Dependent Chlorophyll Biosynthesis in Arabidopsis thalianaPlant Physiology, 1995
- Vibrationally Coherent Photochemistry in the Femtosecond Primary Event of VisionScience, 1994
- The Protochlorophyllide Holochrome of Barley (Hordeum vulgare L.)European Journal of Biochemistry, 1980