首页> 外文期刊>Protein Science: A Publication of the Protein Society >Expression, purification, and activities of full-length and truncated versions of the integral membrane protein Vpu from HIV-1.
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Expression, purification, and activities of full-length and truncated versions of the integral membrane protein Vpu from HIV-1.

机译:HIV-1完整膜蛋白Vpu的全长和截短形式的表达,纯化和活性。

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摘要

Vpu is an 81-residue accessory protein of HIV-1. Because it is a membrane protein, it presents substantial technical challenges for the characterization of its structure and function, which are of considerable interest because the protein enhances the release of new virus particles from cells infected with HIV-1 and induces the intracellular degradation of the CD4 receptor protein. The Vpu-mediated enhancement of the virus release rate from HIV-1-infected cells is correlated with the expression of an ion channel activity associated with the transmembrane hydrophobic helical domain. Vpu-induced CD4 degradation and, to a lesser extent, enhancement of particle release are both dependent on the phosphorylation of two highly conserved serine residues in the cytoplasmic domain of Vpu. To define the minimal folding units of Vpu and to identify their activities, we prepared three truncated forms of Vpu and compared their structural and functional properties to those of full-length Vpu (residues 2-81). Vpu(2-37) encompasses the N-terminal transmembrane alpha-helix; Vpu(2-51) spans the N-terminal transmembrane helix and the first cytoplasmic alpha-helix; Vpu(28-81) includes the entire cytoplasmic domain containing the two C-terminal amphipathic alpha-helices without the transmembrane helix. Uniformly isotopically labeled samples of the polypeptides derived from Vpu were prepared by expression of fusion proteins in E. coli and were studied in the model membrane environments of lipid micelles by solution NMR spectroscopy and oriented lipid bilayers by solid-state NMR spectroscopy. The assignment of backbone resonances enabled the secondary structure of the constructs corresponding to the transmembrane and the cytoplasmic domains of Vpu to be defined in micelle samples by solution NMR spectroscopy. Solid-state NMR spectra of the polypeptides in oriented lipid bilayers demonstrated that the topology of the domains is retained in the truncated polypeptides. The biological activities of the constructs of Vpu were evaluated. The ion channel activity is confined to the transmembrane alpha-helix. The C-terminal alpha-helices modulate or promote the oligomerization of Vpu in the membrane and stabilize the conductive state of the channel, in addition to their involvement in CD4 degradation.
机译:Vpu是HIV-1的81个残基辅助蛋白。由于它是一种膜蛋白,因此对其结构和功能的表征提出了实质性的技术挑战,由于蛋白增强了感染了HIV-1的细胞中新病毒颗粒的释放并诱导了它的细胞内降解,因此引起了极大的关注。 CD4受体蛋白。 Vpu介导的从HIV-1感染的细胞释放病毒的速率的提高与与跨膜疏水螺旋域相关的离子通道活性的表达相关。 Vpu诱导的CD4降解以及较小程度的颗粒释放增强均取决于Vpu胞质域中两个高度保守的丝氨酸残基的磷酸化。为了定义Vpu的最小折叠单位并确定其活性,我们准备了三种截短形式的Vpu,并将其结构和功能特性与全长Vpu(残基2-81)进行了比较。 Vpu(2-37)涵盖N端跨膜α-螺旋; Vpu(2-51)跨过N端跨膜螺旋和第一个胞质α螺旋; Vpu(28-81)包含整个细胞质结构域,其中包含两个C末端两亲性α螺旋,而没有跨膜螺旋。通过在大肠杆菌中表达融合蛋白,制备了均等同位素标记的Vpu多肽样品,并通过溶液NMR光谱在脂质微团的模型膜环境中进行了研究,并通过固态NMR光谱在定向脂质双层中进行了研究。骨架共振的分配使得能够通过溶液NMR光谱在胶束样品中定义对应于Vpu的跨膜和胞质结构域的构建体的二级结构。定向脂质双层中多肽的固态NMR光谱表明,结构域的拓扑结构保留在截短的多肽中。评价了Vpu构建体的生物学活性。离子通道活性限于跨膜α-螺旋。 C末端的α螺旋除了参与CD4降解外,还调节或促进膜中Vpu的低聚并稳定通道的导电状态。

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