Uncharged S4 residues and cooperativity in voltage-dependent potassium channel activation

被引:139
作者
Smith-Maxwell, CJ
Ledwell, JL
Aldrich, RW
机构
[1] Stanford Univ, Beckman Ctr, Dept Mol & Cellular Physiol, Stanford, CA 94305 USA
[2] Stanford Univ, Howard Hughes Med Inst, Stanford, CA 94305 USA
关键词
Shaker; gating; ion channel; patch clamp;
D O I
10.1085/jgp.111.3.421
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Substitution of the S4 of Shaw into Shaker alters cooperativity in channel activation by slowing a cooperative transition late in the activation pathway. To determine the amino acids responsible for the functional changes in Shaw S4, we created several mutants by substituting amino acids from Shaw S4 into Shaker. The S4 amino acid sequences of Shaker and Shaw S4 differ at 11 positions. Simultaneous substitution of just three noncharged residues from Shaw S4 into Shaker (V369I, I372L, S376T; ILT) reproduces the kinetic and voltage-dependent properties of Shaw S4 channel activation. These substitutions cause very small changes in the structural and chemical properties of the amino acid side chains. In contrast, substituting the positively charged basic residues in the S4 of Shaker with neutral or negative residues from the S4 of Shaw S4 does not reproduce the shallow voltage dependence or other properties of Shaw S4 opening. Macroscopic ionic currents for ILT could be fit by modifying a single set of transitions in a model for Shaker channel gating (Zagotta, W.N., T. Hoshi, and R.W. Aldrich. 1994. J. Gen. Physiol 103:321-362). Changing the rate and voltage dependence of a final cooperative step in activation successfully reproduces the kinetic, steady state, and voltage-dependent properties of ILT ionic currents. Consistent with the model, ILT Sating currents activate at negative voltages where the channel does not open and, at more positive voltages, they precede the ionic currents, confirming the existence of voltage-dependent transitions between closed states in the activation pathway. Of the three substitutions in ILT, the I372L substitution is primarily responsible for the changes in cooperativity and voltage dependence. These results suggest that noncharged residues in the S4 play a crucial role in Shaker potassium channel gating and that small steric changes in these residues can lead to large changes in cooperativity within the channel protein.
引用
收藏
页码:421 / 439
页数:19
相关论文
共 47 条
[21]   A CHARACTERIZATION OF THE ACTIVATING STRUCTURAL REARRANGEMENTS IN VOLTAGE-DEPENDENT SHAKER K+ CHANNELS [J].
MCCORMACK, K ;
JOINER, WJ ;
HEINEMANN, SH .
NEURON, 1994, 12 (02) :301-315
[22]   ELECTROSTATIC INTERACTIONS OF S4 VOLTAGE SENSOR IN SHAKER K+ CHANNEL [J].
PAPAZIAN, DM ;
SHAO, XM ;
SEOH, SA ;
MOCK, AF ;
HUANG, Y ;
WAINSTOCK, DH .
NEURON, 1995, 14 (06) :1293-1301
[23]   ALTERATION OF VOLTAGE-DEPENDENCE OF SHAKER POTASSIUM CHANNEL BY MUTATIONS IN THE S4-SEQUENCE [J].
PAPAZIAN, DM ;
TIMPE, LC ;
JAN, YN ;
JAN, LY .
NATURE, 1991, 349 (6307) :305-310
[24]   S4-MUTATIONS ALTER GATING CURRENTS OF SHAKER-K CHANNELS [J].
PEROZO, E ;
SANTACRUZTOLOZA, L ;
STEFANI, E ;
BEZANILLA, F ;
PAPAZIAN, DM .
BIOPHYSICAL JOURNAL, 1994, 66 (02) :345-354
[25]   GATING CURRENTS FROM A NONCONDUCTING MUTANT REVEAL OPEN-CLOSED CONFORMATIONS IN SHAKER K+ CHANNELS [J].
PEROZO, E ;
MACKINNON, R ;
BEZANILLA, F ;
STEFANI, E .
NEURON, 1993, 11 (02) :353-358
[26]   MUTATION OF CONSERVED NEGATIVELY CHARGED RESIDUES IN THE S2 AND S3 TRANSMEMBRANE SEGMENTS OF A MAMMALIAN K+ CHANNEL SELECTIVELY MODULATES CHANNEL GATING [J].
PLANELLSCASES, R ;
FERRERMONTIEL, AV ;
PATTEN, CD ;
MONTAL, M .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1995, 92 (20) :9422-9426
[27]  
Richardson J. S., 1989, PREDICTION PROTEIN S, V1, P98
[28]   DNA SEQUENCING WITH CHAIN-TERMINATING INHIBITORS [J].
SANGER, F ;
NICKLEN, S ;
COULSON, AR .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1977, 74 (12) :5463-5467
[29]   THE SIZE OF GATING CHARGE IN WILD-TYPE AND MUTANT SHAKER POTASSIUM CHANNELS [J].
SCHOPPA, NE ;
MCCORMACK, K ;
TANOUYE, MA ;
SIGWORTH, FJ .
SCIENCE, 1992, 255 (5052) :1712-1715
[30]   MULTIPLE POTASSIUM-CHANNEL COMPONENTS ARE PRODUCED BY ALTERNATIVE SPLICING AT THE SHAKER LOCUS IN DROSOPHILA [J].
SCHWARZ, TL ;
TEMPEL, BL ;
PAPAZIAN, DM ;
JAN, YN ;
JAN, LY .
NATURE, 1988, 331 (6152) :137-142