Breakdown of chlorophyll: A nonenzymatic reaction accounts for the formation of the colorless “nonfluorescent” chlorophyll catabolites
- 30 May 2003
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 100 (12), 6910-6915
- https://doi.org/10.1073/pnas.1232207100
Abstract
Senescent higher plants degrade their chlorophylls (Chls) to polar colorless tetrapyrrolic Chl catabolites, which accumulate in the vacuoles. In extracts from degreened leaves of the tree Cercidiphyllum japonicum an unpolar catabolite of this type was discovered. This tetrapyrrole was named Cj-NCC-2 and was found to be identical with the product of a stereoselective nonenzymatic isomerization of a "fluorescent" Chl catabolite. This (bio-mimetic) formation of the "nonfluorescent" catabolite Cj-NCC-2 took place readily at ambient temperature and at pH 4.9 in aqueous solution. The indicated nonenzymatic process is able to account for a crucial step during Chl breakdown in senescent higher plants. Once delivered to the acidic vacuoles, the fluorescent Chl catabolites are due to undergo a rapid, stereoselective isomerization to the ubiquitous nonfluorescent catabolites. The degradation of the Chl macrocycle is thus indicated to rely on just two known enzymes, one of which is senescence specific and cuts open the chlorin macroring. The two enzymes supply the fluorescent Chl catabolites, which are "programmed" to isomerize further rapidly in an acidic medium, as shown here. Indeed, only small amounts of the latter are temporarily observable during senescence in higher plants.Keywords
This publication has 34 references indexed in Scilit:
- Isolation and Characterization of a Urobilinogenoidic Chlorophyll Catabolite from Hordeum vulgare L.Published by Elsevier ,2001
- Evolution of Chlorophyll Degradation: The Significance of RCC ReductasePlant Biology, 2000
- CHLOROPHYLL DEGRADATIONAnnual Review of Plant Physiology and Plant Molecular Biology, 1999
- The Vacuole and Cell SenescencePublished by Elsevier ,1997
- How Plants Dispose of Chlorophyll CatabolitesJournal of Biological Chemistry, 1996
- Detection, isolation and structure elucidation of a chlorophyll a catabolite from autumnal senescent leaves of Cercidiphyllum japonicumPhytochemistry, 1996
- A New 5-Formylbilinone as the Major Chlorophyll a Catabolite in Tree Senescent LeavesThe Journal of Organic Chemistry, 1995
- Chlorophyll breakdown in senescent cotyledons of rape, Brassica napus L.: Enzymatic cleavage of phaeophorbide a in vitroNew Phytologist, 1995
- Stay‐green genotypes of Phaseolus vulgaris L.: chloroplast proteins and chlorophyll catabolites during foliar senescenceNew Phytologist, 1994
- THE TOTAL SYNTHESIS OF CHLOROPHYLLJournal of the American Chemical Society, 1960