Literature DB >> 22750574

Mass spectrometry--from peripheral proteins to membrane motors.

Nina Morgner1, Felipe Montenegro, Nelson P Barrera, Carol V Robinson.   

Abstract

That membrane protein complexes could survive in the gas phase had always seemed impossible. The lack of chargeable residues, high hydrophobicity, and poor solubility and the vast excess of detergent contributed to the view that it would not be possible to obtain mass spectra of intact membrane complexes. With the recent success in recording mass spectra of these complexes, first from recombinant sources and later from the cellular environment, many surprising properties of these gas phase membrane complexes have been revealed. The first of these was that the interactions between membrane and soluble subunits could survive in vacuum, without detergent molecules adhering to the complex. The second unexpected feature was that their hydrophobicity and, consequently, lower charge state did not preclude ionization. The final surprising finding was that these gas phase membrane complexes carry with them lipids, bound specifically in subunit interfaces. This provides us with an opportunity to distinguish annular lipids that surround the membrane complexes, from structural lipids that have a role in maintaining structure and subunit interactions. In this perspective, we track these developments and suggest explanations for the various discoveries made during this research.
Copyright © 2012 Elsevier Ltd. All rights reserved.

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Year:  2012        PMID: 22750574      PMCID: PMC4058634          DOI: 10.1016/j.jmb.2012.06.033

Source DB:  PubMed          Journal:  J Mol Biol        ISSN: 0022-2836            Impact factor:   5.469


  50 in total

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8.  Interactions of phospholipids with the potassium channel KcsA.

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  16 in total

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5.  Charge Reduction of Membrane Proteins in Native Mass Spectrometry Using Alkali Metal Acetate Salts.

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6.  Low Charge and Reduced Mobility of Membrane Protein Complexes Has Implications for Calibration of Collision Cross Section Measurements.

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7.  Charge reduction stabilizes intact membrane protein complexes for mass spectrometry.

Authors:  Shahid Mehmood; Julien Marcoux; Jonathan T S Hopper; Timothy M Allison; Idlir Liko; Antoni J Borysik; Carol V Robinson
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8.  Characterization of unstable products of flavin- and pterin-dependent enzymes by continuous-flow mass spectrometry.

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9.  Defining the stoichiometry and cargo load of viral and bacterial nanoparticles by Orbitrap mass spectrometry.

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10.  Comparative cross-linking and mass spectrometry of an intact F-type ATPase suggest a role for phosphorylation.

Authors:  Carla Schmidt; Min Zhou; Hazel Marriott; Nina Morgner; Argyris Politis; Carol V Robinson
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