The perspectives on membrane protein insertion and protein–bilayer interactions (J. Gen. Physiol. 129:351–377) made important points concerning amino acid residue hydrophobicity, interfacial propensity, and membrane partitioning (MacCallum et al., 2007; von Heijne, 2007; White, 2007; Wolfenden, 2007). It is particularly striking that the relative ordering of the tendencies for particular amino acids to be inserted into a transmembrane helix from a translocon (Hessa et al., 2005) is highly correlated with the relative ordering of both (a) the experimental free energies for bare side chain (RH) transfer from cyclohexane to water (Wolfenden, 2007) and (b) the calculated free energies for side chain transfer from water to the center of a DOPC membrane (MacCallum et al., 2007). The relative octanol/water partitioning provides a good indication of interfacial propensity. Because water-saturated 1-octanol contains...
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1 August 2007
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Letter to the Editor|
July 16 2007
Concerning Tryptophan and Protein–Bilayer Interactions
Roger E. Koeppe, II
Roger E. Koeppe, II
Department of Chemistry and Biochemistry, University of Arkansas, Fayetteville, AR 72701
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Roger E. Koeppe, II
Department of Chemistry and Biochemistry, University of Arkansas, Fayetteville, AR 72701
Correspondence to Roger E. Koeppe II: [email protected]
Online ISSN: 1540-7748
Print ISSN: 0022-1295
The Rockefeller University Press
2007
J Gen Physiol (2007) 130 (2): 223–224.
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Roger E. Koeppe; Concerning Tryptophan and Protein–Bilayer Interactions . J Gen Physiol 1 August 2007; 130 (2): 223–224. doi: https://doi.org/10.1085/jgp.200709829
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See also
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- Perspectives on Membrane Protein Insertion, Protein–Bilayer Interactions, and Amino Acid Side Hydrophobicity
- Lonely Arginine Seeks Friendly Environment
- Bilayers as Protein Solvents: Role of Bilayer Structure and Elastic Properties
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- Modeling Charged Protein Side Chains in Lipid Membranes
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