Literature DB >> 24010543

Effect of diaminopropionic acid (Dap) on the biophysical properties of a modified synthetic channel-forming peptide.

Urska Bukovnik1, Monica Sala-Rabanal, Simonne Francis, Shawnalea J Frazier, Bruce D Schultz, Colin G Nichols, John M Tomich.   

Abstract

Channel replacement therapy, based on synthetic channel-forming peptides (CFPs) with the ability to supersede defective endogenous ion channels, is a novel treatment modality that may augment existing interventions against multiple diseases. Previously, we derived CFPs from the second transmembrane segment of the α-subunit of the glycine receptor, M2GlyR, which forms chloride-selective channels in its native form. The best candidate, NK4-M2GlyR T19R, S22W (p22-T19R, S22W), was water-soluble, incorporated into cell membranes and was nonimmunogenic, but lacked the structural properties for high conductance and anion selectivity when assembled into a pore. Further studies suggested that the threonine residues at positions 13, 17, and 20 line the pore of assembled p22-T19R, S22W, and here we used 2,3-diaminopropionic acid (Dap) substitutions to introduce positive charges to the pore-lining interface of the predicted p22-T19R, S22W channel. Dap-substituted p22-T19R, S22W peptides retained the α-helical secondary structure characteristic of their parent peptide, and induced short-circuit transepithelial currents when exposed to the apical membrane of Madin-Darby canine kidney (MDCK) cells; the sequences containing multiple Dap-substituted residues induced larger currents than the peptides with single or no Dap substitutions. To gain further insights into the effects of Dap residues on the properties of the putative pore, we performed two-electrode voltage clamp electrophysiology on Xenopus oocytes exposed to p22-T19R, S22W or its Dap-modified analogues. We observed that Dap-substituted peptides also induced significantly larger voltage-dependent currents than the parent compound, but there was no apparent change in reversal potential upon replacement of external Na+, Cl- or K+, indicating that these currents remained nonselective. These results suggest that the introduction of positively charged side chains in predicted pore-lining residues does not improve anion-to-cation selectivity, but results in higher conductance, perhaps due to higher oligomerization numbers.

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Year:  2013        PMID: 24010543      PMCID: PMC3845493          DOI: 10.1021/mp4002377

Source DB:  PubMed          Journal:  Mol Pharm        ISSN: 1543-8384            Impact factor:   4.939


  33 in total

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2.  Gating the selectivity filter in ClC chloride channels.

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3.  Structural and biophysical properties of a synthetic channel-forming peptide: designing a clinically relevant anion selective pore.

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Journal:  Biochim Biophys Acta       Date:  2011-07-31

4.  Ion currents through mutant phospholemman channel molecules.

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6.  NH(2)-terminal modification of a channel-forming peptide increases capacity for epithelial anion secretion.

Authors:  J R Broughman; K E Mitchell; R L Sedlacek; T Iwamoto; J M Tomich; B D Schultz
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Review 7.  Cystic fibrosis transmembrane conductance regulator modulators for personalized drug treatment of cystic fibrosis: progress to date.

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8.  Electrophysiologic properties of channels induced by Abeta25-35 in planar lipid bilayers.

Authors:  Meng-chin Allison Lin; Bruce L Kagan
Journal:  Peptides       Date:  2002-07       Impact factor: 3.750

9.  Human FXYD2 G41R mutation responsible for renal hypomagnesemia behaves as an inward-rectifying cation channel.

Authors:  Qun Sha; Wade Pearson; Lauren C Burcea; Darian A Wigfall; Paul H Schlesinger; Colin G Nichols; Robert W Mercer
Journal:  Am J Physiol Renal Physiol       Date:  2008-04-30

10.  Activity and structural comparisons of solution associating and monomeric channel-forming peptides derived from the glycine receptor m2 segment.

Authors:  Gabriel A Cook; Om Prakash; Ke Zhang; Lalida P Shank; Wade A Takeguchi; Ashley Robbins; Yu-Xi Gong; Takeo Iwamoto; Bruce D Schultz; John M Tomich
Journal:  Biophys J       Date:  2004-03       Impact factor: 4.033

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