Literature DB >> 20130750

Evolutionary distribution of light-harvesting complex-like proteins in photosynthetic eukaryotes.

Jonathan A D Neilson1, Dion G Durnford.   

Abstract

Light-harvesting-like (LIL) proteins are low-molecular-mass membrane proteins related to the light-harvesting complexes, which form the dominant antenna system in most photosynthetic eukaryotes. To analyze the LIL protein family, we mined a number of publicly available databases to identify members of this family in a broad range of organisms. LIL proteins are diverse, having one to three predicted transmembrane helices. One- and two-helix LIL proteins were found in all the major photosynthetic eukaryote lineages (glaucophytes, red algae, and green algae) and are particularly well conserved in the green algae and land plants. In most cases, however, these proteins are not conserved between major lineages, and in some cases appear to have evolved independently. Three-helix LIL proteins are well conserved within the gymnosperms and angiosperms, but are much more divergent, and have been duplicated multiple times, in the green algae and bryophytes. We also identified a novel LIL protein in two Micromonas strains that contains a fourth hydrophobic region. This analysis identifies conserved members of the LIL protein family, signifying their importance to photosynthetic eukaryotes. It also indicates that classification of these proteins based on structural characteristics alone inadequately reflects the evolutionary history observed in this complex protein family.

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Year:  2010        PMID: 20130750     DOI: 10.1139/g09-081

Source DB:  PubMed          Journal:  Genome        ISSN: 0831-2796            Impact factor:   2.166


  15 in total

Review 1.  Structural and functional diversification of the light-harvesting complexes in photosynthetic eukaryotes.

Authors:  Jonathan A D Neilson; Dion G Durnford
Journal:  Photosynth Res       Date:  2010-07-02       Impact factor: 3.573

2.  The Photosystem II D1-K238E mutation enhances electrical current production using cyanobacterial thylakoid membranes in a bio-photoelectrochemical cell.

Authors:  Shirley Larom; Dan Kallmann; Gadiel Saper; Roy Pinhassi; Avner Rothschild; Hen Dotan; Guy Ankonina; Gadi Schuster; Noam Adir
Journal:  Photosynth Res       Date:  2015-01-15       Impact factor: 3.573

3.  Stable Accumulation of Photosystem II Requires ONE-HELIX PROTEIN1 (OHP1) of the Light Harvesting-Like Family.

Authors:  Fumiyoshi Myouga; Kaori Takahashi; Ryoichi Tanaka; Noriko Nagata; Anett Z Kiss; Christiane Funk; Yuko Nomura; Hirofumi Nakagami; Stefan Jansson; Kazuo Shinozaki
Journal:  Plant Physiol       Date:  2018-02-01       Impact factor: 8.340

4.  The antenna-like domain of the cyanobacterial ferrochelatase can bind chlorophyll and carotenoids in an energy-dissipative configuration.

Authors:  Marek Pazderník; Jan Mareš; Jan Pilný; Roman Sobotka
Journal:  J Biol Chem       Date:  2019-06-05       Impact factor: 5.157

5.  The structure of the Physcomitrium patens photosystem I reveals a unique Lhca2 paralogue replacing Lhca4.

Authors:  C Gorski; R Riddle; H Toporik; Z Da; Z Dobson; D Williams; Y Mazor
Journal:  Nat Plants       Date:  2022-02-21       Impact factor: 15.793

Review 6.  The terminal enzymes of (bacterio)chlorophyll biosynthesis.

Authors:  Matthew S Proctor; George A Sutherland; Daniel P Canniffe; Andrew Hitchcock
Journal:  R Soc Open Sci       Date:  2022-05-04       Impact factor: 3.653

7.  Functional analysis of light-harvesting-like protein 3 (LIL3) and its light-harvesting chlorophyll-binding motif in Arabidopsis.

Authors:  Kaori Takahashi; Atsushi Takabayashi; Ayumi Tanaka; Ryouichi Tanaka
Journal:  J Biol Chem       Date:  2013-11-25       Impact factor: 5.157

8.  Analysis of LhcSR3, a protein essential for feedback de-excitation in the green alga Chlamydomonas reinhardtii.

Authors:  Giulia Bonente; Matteo Ballottari; Thuy B Truong; Tomas Morosinotto; Tae K Ahn; Graham R Fleming; Krishna K Niyogi; Roberto Bassi
Journal:  PLoS Biol       Date:  2011-01-18       Impact factor: 8.029

9.  A novel type of light-harvesting antenna protein of red algal origin in algae with secondary plastids.

Authors:  Sabine Sturm; Johannes Engelken; Ansgar Gruber; Sascha Vugrinec; Peter G Kroth; Iwona Adamska; Johann Lavaud
Journal:  BMC Evol Biol       Date:  2013-07-30       Impact factor: 3.260

10.  Presence of state transitions in the cryptophyte alga Guillardia theta.

Authors:  Otilia Cheregi; Eva Kotabová; Ondřej Prášil; Wolfgang P Schröder; Radek Kaňa; Christiane Funk
Journal:  J Exp Bot       Date:  2015-08-06       Impact factor: 6.992

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