The free energy of partitioning an amino acid side chain from water into the cell membrane is one of the critical parameters for understanding and predicting membrane protein stability, and understanding membrane protein function. Transmembrane segments are generally very hydrophobic, but may contain hydrophilic residues that are important for the structure or function of the protein. Experimental and theoretical studies have shown that the presence of polar residues, such as Asn, can lead to the formation of helical aggregates (Stockner et al., 2004; Tatko et al., 2006). The crystal structures of the voltage-gated potassium channels KvAP (Jiang et al., 2003a) and Kv1.2 (Long et al., 2005) have caused vigorous debate in the ion channel community as some models proposed based on the crystal structures would have the arginine gating charges exposed to the lipid environment (Jiang et...
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1 May 2007
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April 16 2007
Partitioning of Amino Acid Side Chains into Lipid Bilayers: Results from Computer Simulations and Comparison to Experiment
Justin L. MacCallum,
Justin L. MacCallum
Department of Biological Sciences, University of Calgary, Calgary AB T3A 2H4, Canada
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W.F. Drew Bennett,
W.F. Drew Bennett
Department of Biological Sciences, University of Calgary, Calgary AB T3A 2H4, Canada
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D. Peter Tieleman
D. Peter Tieleman
Department of Biological Sciences, University of Calgary, Calgary AB T3A 2H4, Canada
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Justin L. MacCallum
Department of Biological Sciences, University of Calgary, Calgary AB T3A 2H4, Canada
W.F. Drew Bennett
Department of Biological Sciences, University of Calgary, Calgary AB T3A 2H4, Canada
D. Peter Tieleman
Department of Biological Sciences, University of Calgary, Calgary AB T3A 2H4, Canada
Correspondence to Peter Tieleman: [email protected]
Abbreviation used in this paper: PMF, potential of mean force.
Online ISSN: 1540-7748
Print ISSN: 0022-1295
The Rockefeller University Press
2007
J Gen Physiol (2007) 129 (5): 371–377.
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Justin L. MacCallum, W.F. Drew Bennett, D. Peter Tieleman; Partitioning of Amino Acid Side Chains into Lipid Bilayers: Results from Computer Simulations and Comparison to Experiment . J Gen Physiol 1 May 2007; 129 (5): 371–377. doi: https://doi.org/10.1085/jgp.200709745
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See also
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- Formation of Transmembrane Helices In Vivo—Is Hydrophobicity All that Matters?
- Experimental Measures of Amino Acid Hydrophobicity and the Topology of Transmembrane and Globular Proteins
- Membrane Protein Insertion: The Biology–Physics Nexus
- Perspectives on Membrane Protein Insertion, Protein–Bilayer Interactions, and Amino Acid Side Hydrophobicity
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