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稳定的 ATP 结合到核苷酸结合域对于 ABC 转运体 CFTR 的可靠门控循环很重要。

A stable ATP binding to the nucleotide binding domain is important for reliable gating cycle in an ABC transporter CFTR.

机构信息

John M. Dalton Cardiovascular Research Center, University of Missouri-Columbia, Columbia, MO 65211, USA.

出版信息

J Physiol Sci. 2010 Sep;60(5):353-62. doi: 10.1007/s12576-010-0102-2. Epub 2010 Jul 14.

Abstract

Cystic fibrosis transmembrane conductance regulator (CFTR) anion channel, a member of ABC transporter superfamily, gates following ATP-dependent conformational changes of the nucleotide binding domains (NBD). Reflecting the hundreds of milliseconds duration of the channel open state corresponding to the dimerization of two NBDs, macroscopic WT-CFTR currents usually showed a fast, single exponential relaxation upon removal of cytoplasmic ATP. Mutations of tyrosine1219, a residue critical for ATP binding in second NBD (NBD2), induced a significant slow phase in the current relaxation, suggesting that weakening ATP binding affinity at NBD2 increases the probability of the stable open state. The slow phase was effectively diminished by a higher affinity ATP analogue. These data suggest that a stable binding of ATP to NBD2 is required for normal CFTR gating cycle, andthat the instability of ATP binding frequently halts the gating cycle in the open state presumably through a failure of ATP hydrolysis at NBD2.

摘要

囊性纤维化跨膜电导调节因子(CFTR)阴离子通道,ABC 转运蛋白超家族的一员,在核苷酸结合域(NBD)的 ATP 依赖性构象变化后开启。反映出通道开放状态的数百毫秒持续时间对应于两个 NBD 的二聚化,宏观 WT-CFTR 电流通常在细胞质 ATP 去除后迅速呈现单指数弛豫。第二个 NBD(NBD2)中对于 ATP 结合至关重要的酪氨酸 1219 的突变,在电流弛豫中诱导出明显的缓慢相,表明 NBD2 处 ATP 结合亲和力的减弱增加了稳定开放状态的可能性。通过更高亲和力的 ATP 类似物有效减少了缓慢相。这些数据表明,NBD2 中 ATP 的稳定结合对于正常 CFTR 门控循环是必需的,并且 ATP 结合的不稳定性经常通过 NBD2 处 ATP 水解的失败使门控循环在开放状态下停止。

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