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通过短杆菌肽A二聚体的全化学合成探究螺旋束通道中的结构-功能关系:谷氨酰胺7突变为天冬酰胺7的影响

Structure-function relationships in helix-bundle channels probed via total chemical synthesis of alamethicin dimers: effects of a Gln7 to Asn7 mutation.

作者信息

Jaikaran D C, Biggin P C, Wenschuh H, Sansom M S, Woolley G A

机构信息

Department of Chemistry, University of Toronto, Canada.

出版信息

Biochemistry. 1997 Nov 11;36(45):13873-81. doi: 10.1021/bi9716130.

Abstract

Alamethicin channels are prototypical helix bundles that may serve as tractable models for more complex protein ion channels. Solid-phase peptide synthesis of alamethicin analogues using FMOC-amino acid fluorides followed by chemical dimerization of these peptides facilitates structure-function studies of particular channel states in bilayer membranes. State 3 in particular, tentatively assigned to a hexameric helix bundle, is sufficiently long-lived that current-voltage measurements can be made during the lifetime of an individual channel opening. Molecular models of hexameric helix bundles, generated using restrained molecular dynamics with simulated annealing, indicate that a Gln7-->Asn7 (Q7-->N7) mutation will increase channel diameter locally. Experimentally, the conductance of state 3 of the N7-alm channel is found to be larger than that of the Q7-alm channel when ion flow is in the usual direction (cations entering the C-terminal end of the channel). When ion flow is in the opposite direction, no difference in the conductances of state 3 of Q7 and state 3 of N7 channels is observed. These results indicate that the effect of a change in pore diameter at position 7 is dependent on the magnitude of other barriers to permeation and that these barriers are voltage-dependent.

摘要

短杆菌肽通道是典型的螺旋束,可作为更复杂蛋白质离子通道的易于处理的模型。使用芴甲氧羰基氨基酸氟化物进行短杆菌肽类似物的固相肽合成,然后对这些肽进行化学二聚化,有助于在双层膜中对特定通道状态进行结构 - 功能研究。特别是状态3,初步确定为六聚体螺旋束,其寿命足够长,以至于可以在单个通道开放的寿命期间进行电流 - 电压测量。使用带模拟退火的受限分子动力学生成的六聚体螺旋束分子模型表明,Gln7→Asn7(Q7→N7)突变将局部增加通道直径。实验发现,当离子流沿通常方向(阳离子进入通道的C末端)流动时,N7 - 短杆菌肽通道状态3的电导率大于Q7 - 短杆菌肽通道的电导率。当离子流方向相反时,未观察到Q7通道状态3和N7通道状态3的电导率有差异。这些结果表明,7位孔径变化的影响取决于其他渗透屏障的大小,并且这些屏障是电压依赖性的。

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