Physicochemical features of the hERG channel drug binding site

被引:237
作者
Fernandez, D
Ghanta, A
Kauffman, GW
Sanguinetti, MC
机构
[1] Univ Utah, Nora Eccles Harrison Cardiovasc Res & Training In, Salt Lake City, UT 84112 USA
[2] Univ Utah, Dept Physiol, Salt Lake City, UT 84112 USA
[3] Pfizer Global R&D, Groton, CT 06340 USA
关键词
D O I
10.1074/jbc.M310683200
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
Blockade of hERG K+ channels in the heart is an unintentional side effect of many drugs and can induce cardiac arrhythmia and sudden death. It has become common practice in the past few years to screen compounds for hERG channel activity early during the drug discovery process. Understanding the molecular basis of drug binding to hERG is crucial for the rational design of medications devoid of this activity. We previously identified 2 aromatic residues, Tyr-652 and Phe-656, located in the S6 domain of hERG, as critical sites of interaction with structurally diverse drugs. Here, Tyr-652 and Phe-656 were systematically mutated to different residues to determine how the physicochemical properties of the amino acid side group affected channel block by cisapride, terfenadine, and MK-499. The potency for block by all three drugs was well correlated with measures of hydrophobicity, especially the two-dimensional approximation of the van der Waals hydrophobic surface area of the side chain of residue 656. For residue 652, an aromatic side group was essential for high affinity block, suggesting the importance of a cation-pi interaction between Tyr-652 and the basic tertiary nitrogen of these drugs. hERG also lacks a Pro-Val-Pro motif common to the S6 domain of most other voltage-gated K+ channels. Introduction of Pro-Val-Pro into hERG reduced sensitivity to drugs but also altered channel gating. Together, these findings assign specific residues to receptor fields predicted by pharmacophore models of hERG channel blockers and provide a refined molecular understanding of the drug binding site.
引用
收藏
页码:10120 / 10127
页数:8
相关论文
共 34 条
  • [1] Toward a pharmacophore for drugs inducing the long QT syndrome:: Insights from a CoMFA study of HERG K+ channel blockers
    Cavalli, A
    Poluzzi, E
    De Ponti, F
    Recanatini, M
    [J]. JOURNAL OF MEDICINAL CHEMISTRY, 2002, 45 (18) : 3844 - 3853
  • [2] Position of aromatic residues in the S6 domain, not inactivation, dictates cisapride sensitivity of HERG and eag potassium channels
    Chen, J
    Seebohm, G
    Sanguinetti, MC
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2002, 99 (19) : 12461 - 12466
  • [3] Blocker protection in the pore of a voltage-gated K+ channel and its structural implications
    del Camino, D
    Holmgren, M
    Liu, Y
    Yellen, G
    [J]. NATURE, 2000, 403 (6767) : 321 - 325
  • [4] The structure of the potassium channel:: Molecular basis of K+ conduction and selectivity
    Doyle, DA
    Cabral, JM
    Pfuetzner, RA
    Kuo, AL
    Gulbis, JM
    Cohen, SL
    Chait, BT
    MacKinnon, R
    [J]. SCIENCE, 1998, 280 (5360) : 69 - 77
  • [5] Three-dimensional quantitative structure-activity relationship for inhibition of human ether-a-go-go-related gene potassium channel
    Ekins, S
    Crumb, WJ
    Sarazan, RD
    Wikel, JH
    Wrighton, SA
    [J]. JOURNAL OF PHARMACOLOGY AND EXPERIMENTAL THERAPEUTICS, 2002, 301 (02) : 427 - 434
  • [6] The impact of drug-induced qt interval prolongation on drug discovery and development
    Fermini, B
    Fossa, AA
    [J]. NATURE REVIEWS DRUG DISCOVERY, 2003, 2 (06) : 439 - 447
  • [7] The open pore conformation of potassium channels
    Jiang, YX
    Lee, A
    Chen, JY
    Cadene, M
    Chait, BT
    MacKinnon, R
    [J]. NATURE, 2002, 417 (6888) : 523 - 526
  • [8] JURS PC, 1979, COMPUTER ASSISTED DR, P103
  • [9] Open channel block of HERG K+ channels by vesnarinone
    Kamiya, K
    Mitcheson, JS
    Yasui, K
    Kodama, I
    Sanguinetti, MC
    [J]. MOLECULAR PHARMACOLOGY, 2001, 60 (02) : 244 - 253
  • [10] Karplus PA, 1997, PROTEIN SCI, V6, P1302