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A growing toolbox of techniques for studying ?-barrel outer membrane protein folding and biogenesis.


ABSTRACT: Great strides into understanding protein folding have been made since the seminal work of Anfinsen over 40 years ago, but progress in the study of membrane protein folding has lagged behind that of their water soluble counterparts. Researchers in these fields continue to turn to more advanced techniques such as NMR, mass spectrometry, molecular dynamics (MD) and single molecule methods to interrogate how proteins fold. Our understanding of ?-barrel outer membrane protein (OMP) folding has benefited from these advances in the last decade. This class of proteins must traverse the periplasm and then insert into an asymmetric lipid membrane in the absence of a chemical energy source. In this review we discuss old, new and emerging techniques used to examine the process of OMP folding and biogenesis in vitro and describe some of the insights and new questions these techniques have revealed.

SUBMITTER: Horne JE 

PROVIDER: S-EPMC4900752 | biostudies-literature | 2016 Jun

REPOSITORIES: biostudies-literature

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A growing toolbox of techniques for studying β-barrel outer membrane protein folding and biogenesis.

Horne Jim E JE   Radford Sheena E SE  

Biochemical Society transactions 20160601 3


Great strides into understanding protein folding have been made since the seminal work of Anfinsen over 40 years ago, but progress in the study of membrane protein folding has lagged behind that of their water soluble counterparts. Researchers in these fields continue to turn to more advanced techniques such as NMR, mass spectrometry, molecular dynamics (MD) and single molecule methods to interrogate how proteins fold. Our understanding of β-barrel outer membrane protein (OMP) folding has benefi  ...[more]

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