PucC and LhaA direct efficient assembly of the light-harvesting complexes in Rhodobacter sphaeroides

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PucC and LhaA direct efficient assembly of the light-harvesting complexes in Rhodobacter sphaeroides. / Mothersole, David; Jackson, Philip J.; Vasilev, Cvetelin; Tucker, Jaimey D.; Brindley, Amanda A.; Dickman, Mark J.; Hunter, C. Neil.

In: Molecular Microbiology, Vol. 99, No. 2, 2016, p. 307-327.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Mothersole, D, Jackson, PJ, Vasilev, C, Tucker, JD, Brindley, AA, Dickman, MJ & Hunter, CN 2016, 'PucC and LhaA direct efficient assembly of the light-harvesting complexes in Rhodobacter sphaeroides', Molecular Microbiology, vol. 99, no. 2, pp. 307-327. https://doi.org/10.1111/mmi.13235

APA

Mothersole, D., Jackson, P. J., Vasilev, C., Tucker, J. D., Brindley, A. A., Dickman, M. J., & Hunter, C. N. (2016). PucC and LhaA direct efficient assembly of the light-harvesting complexes in Rhodobacter sphaeroides. Molecular Microbiology, 99(2), 307-327. https://doi.org/10.1111/mmi.13235

Vancouver

Mothersole D, Jackson PJ, Vasilev C, Tucker JD, Brindley AA, Dickman MJ et al. PucC and LhaA direct efficient assembly of the light-harvesting complexes in Rhodobacter sphaeroides. Molecular Microbiology. 2016;99(2):307-327. https://doi.org/10.1111/mmi.13235

Author

Mothersole, David ; Jackson, Philip J. ; Vasilev, Cvetelin ; Tucker, Jaimey D. ; Brindley, Amanda A. ; Dickman, Mark J. ; Hunter, C. Neil. / PucC and LhaA direct efficient assembly of the light-harvesting complexes in Rhodobacter sphaeroides. In: Molecular Microbiology. 2016 ; Vol. 99, No. 2. pp. 307-327.

Bibtex

@article{0a52b6983f784d31ae0e51c37d29604e,
title = "PucC and LhaA direct efficient assembly of the light-harvesting complexes in Rhodobacter sphaeroides",
abstract = "The mature architecture of the photosynthetic membrane of the purple phototroph Rhodobacter sphaeroides has been characterised to a level where an atomic-level membrane model is available, but the roles of the putative assembly proteins LhaA and PucC in establishing this architecture are unknown. Here we investigate the assembly of light-harvesting LH2 and reaction centre-light-harvesting1-PufX (RC-LH1-PufX) photosystem complexes using spectroscopy, pull-downs, native gel electrophoresis, quantitative mass spectrometry and fluorescence lifetime microscopy to characterise a series of lhaA and pucC mutants. LhaA and PucC are important for specific assembly of LH1 or LH2 complexes, respectively, but they are not essential; the few LH1 subunits found in ΔlhaA mutants assemble to form normal RC-LH1-PufX core complexes showing that, once initiated, LH1 assembly round the RC is cooperative and proceeds to completion. LhaA and PucC form oligomers at sites of initiation of membrane invagination; LhaA associates with RCs, bacteriochlorophyll synthase (BchG), the protein translocase subunit YajC and the YidC membrane protein insertase. These associations within membrane nanodomains likely maximise interactions between pigments newly arriving from BchG and nascent proteins within the SecYEG-SecDF-YajC-YidC assembly machinery, thereby co-ordinating pigment delivery, the co-translational insertion of LH polypeptides and their folding and assembly to form photosynthetic complexes.",
author = "David Mothersole and Jackson, {Philip J.} and Cvetelin Vasilev and Tucker, {Jaimey D.} and Brindley, {Amanda A.} and Dickman, {Mark J.} and Hunter, {C. Neil}",
year = "2016",
doi = "10.1111/mmi.13235",
language = "English",
volume = "99",
pages = "307--327",
journal = "Molecular Microbiology",
issn = "0950-382X",
publisher = "Wiley-Blackwell",
number = "2",

}

RIS

TY - JOUR

T1 - PucC and LhaA direct efficient assembly of the light-harvesting complexes in Rhodobacter sphaeroides

AU - Mothersole, David

AU - Jackson, Philip J.

AU - Vasilev, Cvetelin

AU - Tucker, Jaimey D.

AU - Brindley, Amanda A.

AU - Dickman, Mark J.

AU - Hunter, C. Neil

PY - 2016

Y1 - 2016

N2 - The mature architecture of the photosynthetic membrane of the purple phototroph Rhodobacter sphaeroides has been characterised to a level where an atomic-level membrane model is available, but the roles of the putative assembly proteins LhaA and PucC in establishing this architecture are unknown. Here we investigate the assembly of light-harvesting LH2 and reaction centre-light-harvesting1-PufX (RC-LH1-PufX) photosystem complexes using spectroscopy, pull-downs, native gel electrophoresis, quantitative mass spectrometry and fluorescence lifetime microscopy to characterise a series of lhaA and pucC mutants. LhaA and PucC are important for specific assembly of LH1 or LH2 complexes, respectively, but they are not essential; the few LH1 subunits found in ΔlhaA mutants assemble to form normal RC-LH1-PufX core complexes showing that, once initiated, LH1 assembly round the RC is cooperative and proceeds to completion. LhaA and PucC form oligomers at sites of initiation of membrane invagination; LhaA associates with RCs, bacteriochlorophyll synthase (BchG), the protein translocase subunit YajC and the YidC membrane protein insertase. These associations within membrane nanodomains likely maximise interactions between pigments newly arriving from BchG and nascent proteins within the SecYEG-SecDF-YajC-YidC assembly machinery, thereby co-ordinating pigment delivery, the co-translational insertion of LH polypeptides and their folding and assembly to form photosynthetic complexes.

AB - The mature architecture of the photosynthetic membrane of the purple phototroph Rhodobacter sphaeroides has been characterised to a level where an atomic-level membrane model is available, but the roles of the putative assembly proteins LhaA and PucC in establishing this architecture are unknown. Here we investigate the assembly of light-harvesting LH2 and reaction centre-light-harvesting1-PufX (RC-LH1-PufX) photosystem complexes using spectroscopy, pull-downs, native gel electrophoresis, quantitative mass spectrometry and fluorescence lifetime microscopy to characterise a series of lhaA and pucC mutants. LhaA and PucC are important for specific assembly of LH1 or LH2 complexes, respectively, but they are not essential; the few LH1 subunits found in ΔlhaA mutants assemble to form normal RC-LH1-PufX core complexes showing that, once initiated, LH1 assembly round the RC is cooperative and proceeds to completion. LhaA and PucC form oligomers at sites of initiation of membrane invagination; LhaA associates with RCs, bacteriochlorophyll synthase (BchG), the protein translocase subunit YajC and the YidC membrane protein insertase. These associations within membrane nanodomains likely maximise interactions between pigments newly arriving from BchG and nascent proteins within the SecYEG-SecDF-YajC-YidC assembly machinery, thereby co-ordinating pigment delivery, the co-translational insertion of LH polypeptides and their folding and assembly to form photosynthetic complexes.

U2 - 10.1111/mmi.13235

DO - 10.1111/mmi.13235

M3 - Journal article

C2 - 26419219

VL - 99

SP - 307

EP - 327

JO - Molecular Microbiology

JF - Molecular Microbiology

SN - 0950-382X

IS - 2

ER -

ID: 154220266