Evolutionary implications from lipids in membrane bilayers and photosynthetic complexes in cyanobacteria and chloroplasts

Author:

Kobayashi Koichi12ORCID,Yoshihara Akiko1,Kubota-Kawai Hisako3

Affiliation:

1. Osaka Metropolitan University Department of Biology, Graduate School of Science, , 1-1 Gakuen-cho, Naka-ku, Sakai, Osaka 599-8531, Japan

2. Osaka Metropolitan University Faculty of Liberal Arts, Science and Global Education, , 1-1 Gakuen-cho, Naka-ku, Sakai, Osaka 599-8531, Japan

3. Yamagata University Faculty of Science, , 1-4-12 Kojirakawa-machi, Yamagata-shi 990-8560, Japan

Abstract

Abstract In biomembranes, lipids form bilayer structures that serve as the fluid matrix for membrane proteins and other hydrophobic compounds. Additionally, lipid molecules associate with membrane proteins and impact their structures and functions. In both cyanobacteria and the chloroplasts of plants and algae, the lipid bilayer of the thylakoid membrane consists of four distinct glycerolipid classes: monogalactosyldiacylglycerol, digalactosyldiacylglycerol, sulfoquinovosyldiacylglycerol, and phosphatidylglycerol. These lipids are also integral components of photosynthetic complexes such as photosystem II and photosystem I. The lipid-binding sites within the photosystems, as well as the lipid composition in the thylakoid membrane, are highly conserved between cyanobacteria and photosynthetic eukaryotes, and each lipid class has specific roles in oxygenic photosynthesis. This review aims to shed light on the potential evolutionary implications of lipid utilization in membrane lipid bilayers and photosynthetic complexes in oxygenic photosynthetic organisms.

Publisher

Oxford University Press (OUP)

Subject

Molecular Biology,Biochemistry,General Medicine

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