CFTR gating - II: Effects of nucleotide binding on the stability of open states

被引:41
作者
Bompadre, SG
Cho, JH
Wang, XH
Zou, XQ
Sohma, Y
Li, M
Hwang, TC [1 ]
机构
[1] Univ Missouri, Dept Med Pharmacol & Physiol, Columbia, MO 65211 USA
[2] Univ Missouri, Dept Biochem, Columbia, MO 65211 USA
[3] Univ Missouri, Dalton Cardiovasc Res Ctr, Columbia, MO 65211 USA
[4] Osaka Med Coll, Dept Physiol, Takatsuki, Osaka 56986586, Japan
关键词
chloride channel; single-channel kinetics; ABC transporter; energetics; macroscopic relaxation;
D O I
10.1085/jgp.200409228
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Previously, we demonstrated that ADP inhibits cystic fibrosis transmembrane conductance regulator (CFTR) opening by competing with ATP for a binding site presumably in the COOH-terminal nucleotide binding domain (NBD2). We also found that the open time of the channel is shortened in the presence of ADP. To further study this effect of ADP on the open state, we have used two CFTR mutants (D1370N and E1371S); both have longer open times because of impaired ATP hydrolysis at NBD2. Single-channel kinetic analysis of Delta R/D1370N-CFTR shows unequivocally that the open time of this mutant channel is decreased by ADP. Delta R/E1371S-CFTR channels can be locked open by millimolar ATP with a time constant of similar to 100 s, estimated from current relaxation upon nucleotide removal. ADP induces a shorter locked-open state, suggesting that binding of ADP at a second site decreases the locked-open time. To test the functional consequence of the occupancy of this second nucleotide binding site, we changed the [ATP] and performed similar relaxation analysis for E1371S-CFTR channels. Two locked- open time constants can be discerned and the relative distribution of each component is altered by changing [ATP] so that increasing [ATP] shifts the relative distribution to the longer locked-open state. Single-channel kinetic analysis for Delta R/E1371S-CFTR confirms an [ATP]-dependent shift of the distribution of two locked-open time constants. These results support the idea that occupancy of a second ATP binding site stabilizes the locked-open state. This binding site likely resides in the NH2-terminal nucleotide binding domain (NBD1) because introducing the K464A mutation, which decreases ATP binding affinity at NBD1, into E1371S-CFTR shortens the relaxation time constant. These results suggest that the binding energy of nucleotide at NBD1 contributes to the overall energetics of the open channel conformation.
引用
收藏
页码:377 / 394
页数:18
相关论文
共 32 条
[1]   Capsaicin potentiates wild-type and mutant cystic fibrosis transmembrane conductance regulator chloride-channel currents [J].
Ai, T ;
Bompadre, SG ;
Wang, XH ;
Hu, SH ;
Li, M ;
Hwang, TC .
MOLECULAR PHARMACOLOGY, 2004, 65 (06) :1415-1426
[2]   The non-hydrolytic pathway of cystic fibrosis transmembrane conductance regulator ion channel gating [J].
Aleksandrov, AA ;
Chang, XB ;
Aleksandrov, L ;
Riordan, JR .
JOURNAL OF PHYSIOLOGY-LONDON, 2000, 528 (02) :259-265
[3]   Regulation of CFTR ion channel gating by MgATP [J].
Aleksandrov, AA ;
Riordan, JR .
FEBS LETTERS, 1998, 431 (01) :97-101
[4]   Prolonged nonhydrolytic interaction of nucleotide with CFTR's NH2-terminal nucleotide binding domain and its role in channel gating [J].
Basso, C ;
Vergani, P ;
Nairn, AC ;
Gadsby, DC .
JOURNAL OF GENERAL PHYSIOLOGY, 2003, 122 (03) :333-348
[5]   CFTR gating -: I:: Characterization of the ATP-dependent gating of a phosphorylation-independent CFTR channel (ΔR-CFTR) [J].
Bompadre, SG ;
Ai, T ;
Cho, JH ;
Wang, XH ;
Sohma, Y ;
Li, M ;
Hwang, TC .
JOURNAL OF GENERAL PHYSIOLOGY, 2005, 125 (04) :361-375
[6]   THE 2 NUCLEOTIDE-BINDING DOMAINS OF CYSTIC-FIBROSIS TRANSMEMBRANE CONDUCTANCE REGULATOR (CFTR) HAVE DISTINCT FUNCTIONS IN CONTROLLING CHANNEL ACTIVITY [J].
CARSON, MR ;
TRAVIS, SM ;
WELSH, MJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1995, 270 (04) :1711-1717
[7]   A tweezers-like motion of the ATP-binding cassette dimer in an ABC transport cycle [J].
Chen, J ;
Lu, G ;
Lin, J ;
Davidson, AL ;
Quiocho, FA .
MOLECULAR CELL, 2003, 12 (03) :651-661
[8]   DEFECTIVE INTRACELLULAR-TRANSPORT AND PROCESSING OF CFTR IS THE MOLECULAR-BASIS OF MOST CYSTIC-FIBROSIS [J].
CHENG, SH ;
GREGORY, RJ ;
MARSHALL, J ;
PAUL, S ;
SOUZA, DW ;
WHITE, GA ;
ORIORDAN, CR ;
SMITH, AE .
CELL, 1990, 63 (04) :827-834
[9]   Rapid kinetic analysis of multichannel records by a simultaneous fit to all dwell-time histograms [J].
Csanády, L .
BIOPHYSICAL JOURNAL, 2000, 78 (02) :785-799
[10]   Crystal structure of MalK, the ATPase subunit of the trehalose/maltose ABC transporter of the archaeon Thermococcus litoralis [J].
Diederichs, K ;
Diez, J ;
Greller, G ;
Müller, C ;
Breed, J ;
Schnell, C ;
Vonrhein, C ;
Boos, W ;
Welte, W .
EMBO JOURNAL, 2000, 19 (22) :5951-5961