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一种结合了来自固态核磁共振的精确取向和距离限制的H⁺通道螺旋束的封闭状态。

The closed state of a H+ channel helical bundle combining precise orientational and distance restraints from solid state NMR.

作者信息

Nishimura Katsuyuki, Kim Sanguk, Zhang Li, Cross T A

机构信息

National High Magnetic Field Laboratory, Florida State University, Tallahassee, Florida 32310, USA.

出版信息

Biochemistry. 2002 Nov 5;41(44):13170-7. doi: 10.1021/bi0262799.

Abstract

An interhelical distance has been precisely measured by REDOR solid-state NMR spectroscopy in the transmembrane tetrameric bundle of M2-TMP, from the M2 proton channel of the influenza A viral coat. The high-resolution structure of the helical backbone has been determined using orientational restraints from uniformly aligned peptide preparations in hydrated dimyristoylphosphatidylcholine bilayers. Here, the distance between (15)N(pi) labeled His37 and (13)C(gamma) labeled Trp41 is determined to be less than 3.9 A. Such a short distance, in combination with the known tilt and rotational orientation of the individual helices, permits not only a determination of which specific side chain pairings give rise to the interaction, but also the side chain torsion angles and restraints for the tetrameric bundle can also be characterized. The resulting proton channel structure is validated in a variety of ways. Both histidine and tryptophan side chains are oriented in toward the pore where they can play a significant functional role. The channel appears to be closed by the proximity of the four indoles consistent with electrophysiology and mutagenesis studies of the intact protein at pH 7.0 and above. The pore maintains its integrity to the N terminal side of the membrane, and at the same time, a cavity is generated that appears adequate for binding amantadine. Finally, the observation of a 2 kHz coupling in the PISEMA spectrum of (15)N(pi)His37 validates the orientation of the His37 side chain based on the observed REDOR distance.

摘要

已通过REDOR固态核磁共振光谱法精确测量了来自甲型流感病毒衣壳M2质子通道的M2-TMP跨膜四聚体束中的螺旋间距。利用水合二肉豆蔻酰磷脂酰胆碱双层中均匀排列的肽制剂的取向限制,确定了螺旋主链的高分辨率结构。在此,确定了(15)N(π)标记的His37与(13)C(γ)标记的Trp41之间的距离小于3.9埃。如此短的距离,结合各个螺旋已知的倾斜和旋转取向,不仅可以确定哪些特定的侧链配对产生了相互作用,而且还可以表征四聚体束的侧链扭转角和限制。所得的质子通道结构通过多种方式得到验证。组氨酸和色氨酸侧链都朝向孔内取向,在那里它们可以发挥重要的功能作用。在pH 7.0及以上时,该通道似乎因四个吲哚的靠近而关闭,这与完整蛋白质的电生理学和诱变研究一致。孔在膜的N端侧保持其完整性,同时产生一个似乎足以结合金刚烷胺的腔。最后,在(15)N(π)His37的PISEMA光谱中观察到2 kHz的耦合,基于观察到的REDOR距离验证了His37侧链的取向。

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