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Photosynthetic Proteins in Supported Lipid Bilayers: Towards a Biokleptic Approach for Energy Capture

  • University of Leeds
  • School of Chemistry and Chemical Engineering, Harbin Institute of Technology

Research output: Contribution to journalReview articlepeer-review

Abstract

In nature, plants and some bacteria have evolved an ability to convert solar energy into chemical energy usable by the organism. This process involves several proteins and the creation of a chemical gradient across the cell membrane. To transfer this process to a laboratory environment, several conditions have to be met: i) proteins need to be reconstituted into a lipid membrane, ii) the proteins need to be correctly oriented and functional and, finally, iii) the lipid membrane should be capable of maintaining chemical and electrical gradients. Investigating the processes of photosynthesis and energy generation in vivo is a difficult task due to the complexity of the membrane and its associated proteins. Solid, supported lipid bilayers provide a good model system for the systematic investigation of the different components involved in the photosynthetic pathway. In this review, the progress made to date in the development of supported lipid bilayer systems suitable for the investigation of membrane proteins is described; in particular, there is a focus on those used for the reconstitution of proteins involved in light capture. Progress towards the development of lipid bilayer-based systems for the investigation of membrane proteins is reviewed, with a particular focus on light-capturing proteins. Different methods for the formation of supported lipid bilayers are presented, and some proteins involved in light harvesting and energy transfer in bacterial membranes are discussed.

Original languageEnglish
Pages (from-to)3306-3318
Number of pages13
JournalSmall
Volume11
Issue number27
DOIs
StatePublished - 1 Jul 2015
Externally publishedYes

Keywords

  • energy capture
  • light harvesting
  • lipid bilayers
  • photosynthesis
  • proteins

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