Synthetic Peptide Fragments as Probes for Structure Determination of Potassium Ion-Channel Proteins

作者: Parvez I. Haris

DOI: 10.1023/A:1020257215577

关键词: Ion channelBiophysicsPotassium channelPotassiumTransmembrane proteinBiochemistryProtein structureProtein secondary structureChemistryMembraneMembrane proteinCell biologyMolecular biology

摘要: Potassium channels are a diverse class of transmembrane proteins that are responsible for diffusion of potassium ion across cell membranes. The lack of large quantities of these proteins from natural sources, is a major hindrance in their structural characterization using biophysical techniques. Synthetic peptide fragments corresponding to functionally important domains of these proteins provide an attractive approach towards characterizing the structural organization of these ion-channels. Conformational properties of peptides from three different potassium channels (Shaker, ROMK1 and minK) have been characterized in aqueous media, organic solvents and in phospholipid membranes. Techniques used for these studies include FTIR, CD and 2D-NMR spectroscopy. FTIR spectroscopy has been a particularly valuable tool for characterizing the folding of the ion-channel peptides in phospholipid membranes; the three different types of potassium channels all share a common transmembrane folding pattern that is composed of a predominantly α-helical structure. There is no evidence to suggest the presence of any significant β-sheet structure. These results are in excellent agreement with the crystal structure of a bacterial potassium channel (Doyle, D. A. et al. (1998) Science280:69–77), and suggest that all potassium channel proteins may share a common folding motif where the ion-channel structure is constructed entirely from α-helices.

参考文章(34)
B. A. Cornell, V. L. B. Braach-Maksvytis, L. G. King, P. D. J. Osman, B. Raguse, L. Wieczorek, R. J. Pace, A biosensor that uses ion-channel switches Nature. ,vol. 387, pp. 580- 583 ,(1997) , 10.1038/42432
Eric A. J. MERCER, Geoffrey W. ABBOTT, Stephen P. BRAZIER, Bala RAMESH, Parvez I. HARIS, Surjit K. S. SRAI, Synthetic putative transmembrane region of minimal potassium channel protein (minK) adopts an alpha-helical conformation in phospholipid membranes. Biochemical Journal. ,vol. 325, pp. 475- 479 ,(1997) , 10.1042/BJ3250475
M. Reza Ghadiri, Juan R. Granja, Lukas K. Buehler, Artificial transmembrane ion channels from self-assembling peptide nanotubes Nature. ,vol. 369, pp. 301- 304 ,(1994) , 10.1038/369301A0
Johan C. Sanders, Parvez I. Haris, Dennis Chapman, Cees Otto, Marcus A. Hemminga, Secondary Structure of M13 Coat Protein in Phospholipids Studied by Circular Dichroism, Raman, and Fourier Transform Infrared Spectroscopy Biochemistry. ,vol. 32, pp. 12446- 12454 ,(1993) , 10.1021/BI00097A024
Parvez I. Haris, Bala Ramesh, Stephen Brazier, Dennis Chapman, The conformational analysis of a synthetic S4 peptide corresponding to a voltage-gated potassium ion channel protein FEBS Letters. ,vol. 349, pp. 371- 374 ,(1994) , 10.1016/0014-5793(94)00704-7
S.R. Durell, H.R. Guy, Atomic scale structure and functional models of voltage-gated potassium channels Biophysical Journal. ,vol. 62, pp. 238- 250 ,(1992) , 10.1016/S0006-3495(92)81809-X
T Takumi, H Ohkubo, S Nakanishi, Cloning of a membrane protein that induces a slow voltage-gated potassium current Science. ,vol. 242, pp. 1042- 1045 ,(1988) , 10.1126/SCIENCE.3194754
Parvez I. Haris, Dennis Chapman, Does Fourier-transform infrared spectroscopy provide useful information on protein structures? Trends in Biochemical Sciences. ,vol. 17, pp. 328- 333 ,(1992) , 10.1016/0968-0004(92)90305-S
M SANSOM, The biophysics of peptide models of ion channels. Progress in Biophysics & Molecular Biology. ,vol. 55, pp. 139- 235 ,(1991) , 10.1016/0079-6107(91)90004-C
Louis A. Carpino, Grace Y. Han, 9-Fluorenylmethoxycarbonyl amino-protecting group Journal of Organic Chemistry. ,vol. 37, pp. 3404- 3409 ,(1972) , 10.1021/JO00795A005