Apoprotein heterogeneity increases spectral disorder and a step-wise modification of the B850 fluorescence peak position
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Date
Authors
Ilioaia, Cristian
Kruger, T.P.J. (Tjaart)
Ilioaia, Oana
Robert, Bruno
Van Grondelle, Rienk
Gall, Andrew
Journal Title
Journal ISSN
Volume Title
Publisher
Elsevier
Abstract
It has already been established that the quaternary structure of the main light-harvesting complex (LH2) from the photosynthetic bacterium Rhodopseudomonas palustris is a nonameric ‘ring’ of PucAB heterodimers and under low-light culturing conditions an increased diversity of PucB synthesis occurs. In this work, single molecule fluorescence emission studies show that different classes of LH2 ‘rings’ are present in “low-light” adapted cells and that an unknown chaperon process creates multiple sub-types of ‘rings’ with more conformational sub-states and configurations. This increase in spectral disorder significantly augments the cross-section for photon absorption and subsequent energy flow to the reaction centre trap when photon availability is a limiting factor. This work highlights yet another variant used by phototrophs to gather energy for cellular development.
Description
Keywords
Light-harvesting complex (LH2), Purple bacteria, Single molecule spectroscopy, Photosynthesis, Low temperature, Bacteriochlorophyll (Bchl), Rhodopseudomonas palustris, Rhodobacter sphaeroides, Pigment organization
Sustainable Development Goals
Citation
Ilioaia, C., Kruger, T.P.J., Ilioaia, O. et al. 2018, 'Apoprotein heterogeneity increases spectral disorder and a step-wise modification of the B850 fluorescence peak position', Biochimica et Biophysica Acta (BBA) - Bioenergetics, vol. 1859, no. 2, pp. 137-144.