Removal of clustered positive charge from dihydropyridine receptor II–III loop peptide augments activation of ryanodine receptors
Peptides based on the skeletal muscle DHPR II–III loop have been shown to regulate ryanodine receptor channel activity. The N-terminal region of this cytoplasmic loop is predicted to adopt an α-helical conformation. We have selected a peptide sequence of 26 residues (Ala 667–Asp 692) as the minimum...
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Veröffentlicht in: | Biochemical and biophysical research communications 2004-02, Vol.314 (3), p.667-674 |
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Sprache: | eng |
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Zusammenfassung: | Peptides based on the skeletal muscle DHPR II–III loop have been shown to regulate ryanodine receptor channel activity. The N-terminal region of this cytoplasmic loop is predicted to adopt an α-helical conformation. We have selected a peptide sequence of 26 residues (Ala
667–Asp
692) as the minimum sequence to emulate the helical propensity of the corresponding protein sequence. The interaction of this control peptide with skeletal and cardiac RyR channels in planar lipid bilayers was then assessed and was found to lack isoform specificity. At low concentrations peptide A
667–D
692 increased RyR open probability, whilst at higher concentrations open probability was reduced. By replacing a region of clustered positive charge with a neutral sequence with the same predisposition to helicity, the inhibitory effect was ablated and activation was enhanced. This novel finding demonstrates that activation does not derive from the presence of positively charged residues adjacent in the primary structure and, although it may be mediated by the alignment of basic residues down one face of an amphipathic helix, not all of these residues are essential. |
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ISSN: | 0006-291X 1090-2104 |
DOI: | 10.1016/j.bbrc.2003.12.128 |