Is lipid bilayer binding a common property of inhibitor cysteine knot ion-channel blockers?

被引:49
作者
Posokhov, Yevgen O.
Gottlieb, Philip A.
Morales, Michael J.
Sachs, Frederick
Ladokhin, Alexey S. [1 ]
机构
[1] Univ Kansas, Med Ctr, Dept Biochem & Mol Biol, Kansas City, KS 66160 USA
[2] SUNY Buffalo, Dept Physiol & Biophys, Buffalo, NY 14214 USA
关键词
D O I
10.1529/biophysj.107.112375
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Recent studies of several ICK ion-channel blockers suggest that lipid bilayer interactions play a prominent role in their actions. Structural similarities led to the hypothesis that bilayer interactions are important for the entire ICK family. We have tested this hypothesis by performing direct measurements of the free energy of bilayer partitioning (DG) of several peptide blockers using our novel quenching-enhanced fluorescence titration protocol. We show that various ICK peptides demonstrate markedly different modes of interaction with large unilamellar lipid vesicles. The mechanosensitive channel blocker, GsMTx4, and its active diastereomeric analog, D- GsMTx4, bind strongly to both anionic and zwitterionic membranes. One potassium channel gating modi. er, rHpTx2gs, interacts negligibly with both types of vesicles at physiological pH, whereas another, SGTx1, interacts only with anionic lipids. The slope of DG dependence on surface potential is very shallow for both GsMTx4 and D-GsMTx4, indicating complex interplay of their hydrophobic and electrostatic interactions with lipid. In contrast, a cell- volume regulator, GsMTx1, and SGTx1 exhibit a very steep DG dependence on surface potential, resulting in a strong binding only for membranes rich in anionic lipids. The high variability of 5 kcal/ mole in observed DG shows that bilayer partitioning is not a universal property of the ICK peptides interacting with ion channels.
引用
收藏
页码:L20 / L22
页数:3
相关论文
共 14 条
[1]  
Bernard C, 2000, PROTEIN SCI, V9, P2059
[2]   Folding amphipathic helices into membranes:: Amphiphilicity trumps hydrophobicity [J].
Fernandez-Vidall, Monica ;
Jayasinghe, Sajith ;
Ladokhin, Alexey S. ;
White, Stephen H. .
JOURNAL OF MOLECULAR BIOLOGY, 2007, 370 (03) :459-470
[3]   Ion channels - Gate expectations [J].
Garcia, ML .
NATURE, 2004, 430 (6996) :153-155
[4]   Solution structure and lipid membrane partitioning of VSTx1, an inhibitor of the KvAP potassium channel [J].
Jung, HJ ;
Lee, JY ;
Kim, SH ;
Eu, YJ ;
Shin, SY ;
Milescu, M ;
Swartz, KJ ;
Kim, JI .
BIOCHEMISTRY, 2005, 44 (16) :6015-6023
[5]   How to measure and analyze tryptophan fluorescence in membranes properly, and why bother? [J].
Ladokhin, AS ;
Jayasinghe, S ;
White, SH .
ANALYTICAL BIOCHEMISTRY, 2000, 285 (02) :235-245
[6]   Protein chemistry at membrane interfaces: Non-additivity of electrostatic and hydrophobic interactions [J].
Ladokhin, AS ;
White, SH .
JOURNAL OF MOLECULAR BIOLOGY, 2001, 309 (03) :543-552
[7]   Solution structure and functional characterization of SGTxl, a modifier of Kv2.1 channel gating [J].
Lee, CW ;
Kim, S ;
Roh, SH ;
Endoh, H ;
Kodera, Y ;
Maeda, T ;
Kohno, T ;
Wang, JM ;
Swartz, KJ ;
Kim, JI .
BIOCHEMISTRY, 2004, 43 (04) :890-897
[8]   A membrane-access mechanism of ion channel inhibition by voltage sensor toxins from spider venom [J].
Lee, SY ;
MacKinnon, R .
NATURE, 2004, 430 (6996) :232-235
[9]   Solution structure of peptide toxins that block mechanosensitive ion channels [J].
Oswald, RE ;
Suchyna, TM ;
McFeeters, R ;
Gottlieb, P ;
Sachs, F .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (37) :34443-34450
[10]   Quenching-enhanced fluorescence titration protocol for accurate determination of free energy of membrane binding [J].
Posokhov, Yevgen O. ;
Gottlieb, Philip A. ;
Ladokhin, Alexey S. .
ANALYTICAL BIOCHEMISTRY, 2007, 362 (02) :290-292