Literature DB >> 29138065

Comparison of lipid-dependent bilayer insertion of pHLIP and its P20G variant.

Victor Vasquez-Montes1, Janessa Gerhart2, Kelly E King2, Damien Thévenin2, Alexey S Ladokhin3.   

Abstract

The ability of the pH-Low Insertion Peptide (pHLIP) to insert into lipid membranes in a transbilayer conformation makes it an important tool for targeting acidic diseased tissues. pHLIP can also serve as a model template for thermodynamic studies of membrane insertion. We use intrinsic fluorescence and circular dichroism spectroscopy to examine the effect of replacing pHLIP's central proline on the pH-triggered lipid-dependent conformational switching of the peptide. We find that the P20G variant (pHLIP-P20G) has a higher helical propensity than the native pHLIP (pHLIP-WT), in both water:organic solvent mixtures and in the presence of lipid bilayers. Spectral shifts of tryptophan fluorescence reveal that with both pHLIP-WT and pHLIP-P20G, the deeply penetrating interfacial form (traditionally called State II) is populated only in pure phosphocholine bilayers. The presence of either anionic lipids or phosphatidylethanolamine leads to a much shallower penetration of the peptide (referred to here as State IIS, for "shallow"). This novel state can be differentiated from soluble state by a reduction in accessibility of tryptophans to acrylamide and by FRET to vesicles doped with Dansyl-PE, but not by a spectral shift in fluorescence emission. FRET experiments indicate free energies for interfacial partitioning range from 6.2 to 6.8kcal/mol and are marginally more favorable for pHLIP-P20G. The effective pKa for the insertion of both peptides depends on the lipid composition, but is always higher for pHLIP-P20G than for pHLIP-WT by approximately one pH unit, which corresponds to a difference of 1.3kcal/mol in free energy of protonation favoring insertion of pHLIP-P20G.
Copyright © 2017 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Conformational switching; Thermodynamics; Transmembrane helix; Tryptophan fluorescence; pH-dependent membrane insertion

Mesh:

Substances:

Year:  2017        PMID: 29138065      PMCID: PMC5732853          DOI: 10.1016/j.bbamem.2017.11.006

Source DB:  PubMed          Journal:  Biochim Biophys Acta Biomembr        ISSN: 0005-2736            Impact factor:   3.747


  58 in total

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Authors:  A S Ladokhin; S H White
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Journal:  Biochemistry       Date:  1997-12-09       Impact factor: 3.162

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Journal:  Biophys J       Date:  2017-08-22       Impact factor: 4.033

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Authors:  Alexander Kyrychenko; Victor Vasquez-Montes; Martin B Ulmschneider; Alexey S Ladokhin
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8.  Interfacial folding and membrane insertion of a designed helical peptide.

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Authors:  W C Wimley; T P Creamer; S H White
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  13 in total

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2.  Ions Modulate Key Interactions between pHLIP and Lipid Membranes.

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4.  Divalent Cations and Lipid Composition Modulate Membrane Insertion and Cancer-Targeting Action of pHLIP.

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6.  Ca2+ -dependent interactions between lipids and the tumor-targeting peptide pHLIP.

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Journal:  Protein Sci       Date:  2022-09       Impact factor: 6.993

7.  pHLIP Peptides Target Acidity in Activated Macrophages.

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Review 10.  Towards a Quantitative Understanding of Protein-Lipid Bilayer Interactions at the Single Molecule Level: Opportunities and Challenges.

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