GRAMICIDIN CHANNELS THAT HAVE NO TRYPTOPHAN RESIDUES

被引:79
作者
FONSECA, V
DAUMAS, P
RANJALAHYRASOLOARIJAO, L
HEITZ, F
LAZARO, R
TRUDELLE, Y
ANDERSEN, OS
机构
[1] CNRS, PHYS CHIM SYST POLYPHASES LAB, UA330, F-34033 MONTPELLIER, FRANCE
[2] GRP RECH CANAUX PEPTIDI TRANSMEMBRANAIRES STRUCT &, F-34033 MONTPELLIER, FRANCE
[3] CNRS, EQUIPE RECH ASSOCIEE, UA468, F-34060 MONTPELLIER, FRANCE
[4] CNRS, CTR BIOPHYS MOLEC, F-45071 ORLEANS, FRANCE
[5] UNIV COMPLUTENSE MADRID, FAC FIS, E-28040 MADRID, SPAIN
关键词
D O I
10.1021/bi00138a014
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In order to understand how aromatic residues modulate the function of membrane-spanning proteins, we examined the role of the four tryptophans in gramicidin A (gA) in determining the average duration and permeability characteristics of membrane-spanning gramicidin channels; the tryptophan residues were replaced by tyrosine (gramicidin T, gT), tyrosine O-benzyl ether [gramicidin T(Bzl), gT(Bzl)], naphthylalanine (gramicidin N, gN), and phenylalanine (gramicidin M enantiomer, gM-). These analogues form channels with durations and conductances that differ some 10- and 16-fold, respectively. The single-channel conductance was invariably decreased by the Trp --> Yyy replacement, and the relative conductance alterations were similar in phosphatidylcholine (DPhPC) and monoglyceride (GMO) bilayers. The duration variations exhibited a more complex pattern, which was quite different in the two membrane environments: in DPhPC bilayers, gN channels have an average duration that is approximately 2-fold longer than that of gA channels; in GMO bilayers, the average duration of gN channels is about one-tenth that of gA channels. The sequence-dependent alterations in channel function do not result from alterations in the channels' peptide backbone structure, because heterodimers can form between the different analogues and gramicidin A, and there is no energetic cost associated with heterodimer formation [cf. Durkin, J. T., Koeppe, R. E., II, & Andersen, O. S. (1990) J. Mol. Biol. 211, 221]. The alterations in permeability properties are consistent with the notion that Trp residues alter the energy profile for ion permeation through long-range electrostatic interactions.
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页码:5340 / 5350
页数:11
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