Issue 18, 2009

Syntheses of allene-modified derivatives of peridinin toward elucidation of the effective role of the allene function in high energy transfer efficiencies in photosynthesis

Abstract

Peridinin is known as the main light-harvesting pigment in photosynthesis in the sea and exhibits exceptionally high energy transfer efficiencies to chlorophyll a. This energy transfer efficiency is thought to be related to the intricate structure of peridinin, which possesses allene and ylidenbutenolide functions in the polyene backbone. There are, however, no studies on the relationship between the structural features of peridinin and its super ability for energy transfer. We then focused on the subjects of why peridinin possesses a unique allene group and how the allene function plays a role in the exceptionally high energy transfer. Toward elucidation of the exact role of the allene function, we now describe the syntheses of three relatively unstable allene-modified derivatives of peridinin along with the results of the Stark spectroscopy of peridinin and the synthesized peridinin derivatives.

Graphical abstract: Syntheses of allene-modified derivatives of peridinin toward elucidation of the effective role of the allene function in high energy transfer efficiencies in photosynthesis

Supplementary files

Article information

Article type
Paper
Submitted
14 Apr 2009
Accepted
15 Jun 2009
First published
13 Jul 2009

Org. Biomol. Chem., 2009,7, 3723-3733

Syntheses of allene-modified derivatives of peridinin toward elucidation of the effective role of the allene function in high energy transfer efficiencies in photosynthesis

T. Kajikawa, K. Aoki, R. S. Singh, T. Iwashita, T. Kusumoto, H. A. Frank, H. Hashimoto and S. Katsumura, Org. Biomol. Chem., 2009, 7, 3723 DOI: 10.1039/B907456B

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