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来自HIV-1的Vpu的生物物理特性表明其具有通道-孔道二元性。

Biophysical characterization of Vpu from HIV-1 suggests a channel-pore dualism.

作者信息

Mehnert T, Routh A, Judge P J, Lam Y H, Fischer D, Watts A, Fischer W B

机构信息

Biomembrane Structure Unit, Department of Biochemistry, Oxford University, Oxford OX1 3QU, United Kingdom.

出版信息

Proteins. 2008 Mar;70(4):1488-97. doi: 10.1002/prot.21642.

Abstract

Vpu from HIV-1 is an 81 amino acid type I integral membrane protein which consists of a cytoplasmic and a transmembrane (TM) domain. The TM domain is known to alter membrane permeability for ions and substrates when inserted into artificial membranes. Peptides corresponding to the TM domain of Vpu (Vpu(1-32)) and mutant peptides (Vpu(1-32)-W23L, Vpu(1-32)-R31V, Vpu(1-32)-S24L) have been synthesized and reconstituted into artificial lipid bilayers. All peptides show channel activity with a main conductance level of around 20 pS. Vpu(1-32)-W23L has a considerable flickering pattern in the recordings and longer open times than Vpu(1-32). Whilst recordings for Vpu(1-32)-R31V are almost indistinguishable from those of the WT peptide, recordings for Vpu(1-32)-S24L do not exhibit any noticeable channel activity. Recordings of WT peptide and Vpu(1-32)-W23L indicate Michaelis-Menten behavior when the salt concentration is increased. Both peptide channels follow the Eisenman series I, indicative for a weak ion channel with almost pore like characteristics.

摘要

来自HIV-1的Vpu是一种由81个氨基酸组成的I型整合膜蛋白,它由一个胞质结构域和一个跨膜(TM)结构域组成。已知当TM结构域插入人工膜时会改变离子和底物的膜通透性。与Vpu的TM结构域相对应的肽(Vpu(1-32))和突变肽(Vpu(1-32)-W23L、Vpu(1-32)-R31V、Vpu(1-32)-S24L)已被合成并重组到人工脂质双层中。所有肽都表现出通道活性,主要电导水平约为20 pS。Vpu(1-32)-W23L在记录中有相当明显的闪烁模式,且开放时间比Vpu(1-32)长。虽然Vpu(1-32)-R31V的记录与野生型肽的记录几乎无法区分,但Vpu(1-32)-S24L的记录未表现出任何明显的通道活性。野生型肽和Vpu(1-32)-W23L的记录表明,当盐浓度增加时呈现米氏行为。两种肽通道均符合艾森曼I系列,表明是一种具有几乎类似孔道特征的弱离子通道。

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