Abstract
A comparison has been made between Signal I, the photo-electron spin resonance signal associated with the primary light conversion act in photosynthesis, and free-radical signals generated in various chlorophyll species in vitro. The esr signals obtained from chlorophyll.monomer, (Chl.L)(+.), chlorophyll dimer, (Chl(2))(+.), and chlorophyll oligomer, (Chl(2))(n) (+.), are broader than Signal I, whereas the chlorophyll-water adduct, (Chl.H(2)O)(n) (+.), gives a signal very much narrower than Signal I. The unusually narrow signal from (Chl.H(2)O)(n) (+.) has been ascribed to spin migration, or to unpaired spin delocalization over a large number of chlorophyll molecules. The linewidth of Signal I can be accounted for by a similar delocalization process. A theoretical relationship between the esr linewidth and the number of chlorophyll molecules, N, over which an unpaired spin is delocalized, takes the form DeltaH(N) = 1/ radicalN.DeltaH(M), where DeltaH(M) is the linewidth of monomer (Chl.L)(+.). This relationship for N = 2 accounts well for the linewidths of Signal I in green algae, blue-green algae, and photosynthetic bacteria in both the (1)H- and (2)H-forms. The linewidth of Signal I (as well as the optical properties of reaction-center chlorophyll) are consistent with unpaired spin delocalization over an entity containing two chlorophyll molecules, (Chl.H(2)O.Chl)(+.).
MeSH Terms
Chlorophyll/analysis
Chlorophyta/metabolism
Cyanobacteria/metabolism
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Norris J R
Uphaus R A
Crespi H L
Katz J J
References (30)
30 references, click to expand
-
An experiment showing that P700 can be an aggregated form of chlorophyll a.
Arch Biochem Biophys. 1965 Jun;110(3):583-5
PMID: 5840687
-
EPR IN CHROMATOPHORES FROM RHODOSPIRILLUM RUBRUM AND IN QUANTASOMES FROM SPINACH CHLOROPLASTS.
Proc Natl Acad Sci U S A. 1962 Jun;48(6):1022-31
PMID: 16590952
-
Chlorophyll a forms in partially purified photosynthetic reaction centers.
Biochim Biophys Acta. 1970 Mar 3;197(2):332-4
PMID: 5416116
-
Long wavelength forms of chlorophyll.
Nature. 1968 Dec 21;220(5173):1231-3
PMID: 5725980
-
An identification of the radical giving rise to the light-induced electron spin resonance signal in photosynthetic bacteria.
Photochem Photobiol. 1969 Mar;9(3):209-18
PMID: 4306353
-
A STUDY OF THE PHOTOINDUCED PORPHYRIN FREE RADICAL BY ELECTRON SPIN RESONANCE.
Biochim Biophys Acta. 1964 Mar 30;79:430-2
PMID: 14163534
-
Relationship of P700, electron spin resonance signal, and photochemical activity of a small chloroplast particle obtained by the action of Triton X-100.
Biochemistry. 1967 Jul;6(7):2210-20
PMID: 4383054
-
Primary photochemistry and electron transport in Rhodospirillum rubrum.
Biochemistry. 1968 Jul;7(7):2642-9
PMID: 5690721
-
Quantum yield for the photoproduced electron paramagnetic resonance signal in chromatophores from Rhodospirillum rubrum.
Biochemistry. 1969 May;8(5):1908-13
PMID: 4306637
-
The pi-Cation Radical of Chlorophyll a.
Proc Natl Acad Sci U S A. 1970 Oct;67(2):813-20
PMID: 16591873
-
On the nature of the free radical formed during the primary process of bacterial photosynthesis.
Biochim Biophys Acta. 1969 Jan 14;172(1):180-3
PMID: 4303202
-
ELECTRON SPIN RESONANCE OF CRYSTALLINE CHLOROPHYLL A AND CRUDE MIXTURES OF CHLOROPHYLL A WITH NORMALLY ASSOCIATED PIGMENTS.
Nature. 1963 Jul 20;199:241-3
PMID: 14076679
-
The one-electron oxidation of metalloporphyrins.
J Am Chem Soc. 1969 Jul 16;91(15):4174-81
PMID: 5789893
-
Primary oxidation-reduction changes during photosynthesis in Rhodospirillum rubrum.
Biochemistry. 1966 Feb;5(2):592-600
PMID: 4287373
-
PHOTO SPIN RESONANCE IN CHLOROPHYLL-CONTAINING PLANT MATERIAL.
Proc Natl Acad Sci U S A. 1957 May 15;43(5):387-93
PMID: 16590024
-
Quantitative dissolution of the membrane and preparation of photoreceptor subunits from Rhodopseudomonas spheroides.
Biochemistry. 1970 Feb 17;9(4):724-33
PMID: 4313734
-
The interaction of the free radical of 5-methylphenazinium methyl sulfate with the light-induced free radical of Rhodospirillum rubrum chromatophores.
Proc Natl Acad Sci U S A. 1967 Apr;57(4):868-75
PMID: 4291921
-
LIGHT-INDUCED PARAMAGNETISM IN CHLOROPLASTS.
Proc Natl Acad Sci U S A. 1956 Oct;42(10):710-8
PMID: 16589937
-
Electron paramagnetic resonance of chlorophyll-water aggregates.
Proc Natl Acad Sci U S A. 1968 May;60(1):100-7
PMID: 4297913
-
Paramagnetic unit in spinach subchloroplast particles: estimation of size.
Science. 1969 Aug 29;165(3896):906-7
PMID: 17777005
-
Aggregation of chlorophyll in nonpolar solvents from molecular weight measurements.
Biochim Biophys Acta. 1969 Sep 2;184(3):604-13
PMID: 5821024
-
Chlorophyll-water interactions. Hydration, dehydration and hydrates of chlorophyll.
Biochim Biophys Acta. 1969 Jun 24;180(2):347-59
PMID: 5795474
-
Light Induced Absorption Changes in Photosynthetic Organisms. II. A Split-beam Difference Spectrophotometer.
Plant Physiol. 1959 May;34(3):184-92
PMID: 16655199
-
Effects of isotopic substitution on electron spin resonance signals in photosynthetic organisms.
Nature. 1965 Jun 12;206(989):1105-10
PMID: 4286260
-
Electron paramagnetic resonance signal produced by ferricyanide in photosynthetic plant materials.
Biochim Biophys Acta. 1968 Aug 20;162(2):286-9
PMID: 4300790
-
Quantitative dissolution of the membrane and preparation of photoreceptor subunits from Rhodospirillum rubrum.
Biochemistry. 1970 Aug 4;9(16):3127-35
PMID: 4321367
-
Interactions between chlorophyll and water in the solid state: electron spin resonance.
Nature. 1968 Jul 27;219(5152):375-7
PMID: 4298559
-
The origin of the long wavelength absorption bands in purple bacteria.
Biochem Biophys Res Commun. 1970 Oct 23;41(2):282-6
PMID: 5518159
-
A kinetic study of the production of light-induced ESR signals in Rhodospirillum rubrum chromatophores.
Arch Biochem Biophys. 1968 Aug;126(2):383-7
PMID: 4299680
-
Primary Quantum Conversion Process in Photosynthesis: Electron Spin Resonance.
Science. 1957 Mar 15;125(3246):499-500
PMID: 17789331