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High-Sensitivity Detection of Nanometer H-F Distances for Protein Structure Determination by H-Detected Fast MAS NMR.通过 H 检测快速 MAS NMR 实现蛋白质结构测定的纳米级 H-F 距离的高灵敏度检测。
J Phys Chem B. 2019 May 23;123(20):4387-4391. doi: 10.1021/acs.jpcb.9b03812. Epub 2019 May 8.
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Determination of Long-Range Distances by Fast Magic-Angle-Spinning Radiofrequency-Driven F-F Dipolar Recoupling NMR.采用快速魔角旋转射频驱动 F-F 偶极重聚 NMR 技术测定长程距离。
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Oligomeric Structure and Three-Dimensional Fold of the HIV gp41 Membrane-Proximal External Region and Transmembrane Domain in Phospholipid Bilayers.寡聚结构和 HIV gp41 跨膜区在磷脂双层中的膜近外部区域和三维折叠。
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Perturbations of Native Membrane Protein Structure in Alkyl Phosphocholine Detergents: A Critical Assessment of NMR and Biophysical Studies.天然膜蛋白结构在烷基磷酸胆碱洗涤剂中的扰动:NMR 和生物物理研究的批判性评估。
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Tilted, Uninterrupted, Monomeric HIV-1 gp41 Transmembrane Helix from Residual Dipolar Couplings.从残留偶极耦合看倾斜、无中断的单体 HIV-1 gp41 跨膜螺旋。
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Water Distribution, Dynamics, and Interactions with Alzheimer's β-Amyloid Fibrils Investigated by Solid-State NMR.通过固态 NMR 研究水的分布、动力学及其与阿尔茨海默病β-淀粉样纤维的相互作用。
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10
Viral fusion protein transmembrane domain adopts β-strand structure to facilitate membrane topological changes for virus-cell fusion.病毒融合蛋白跨膜结构域采用β-链结构,以促进病毒与细胞融合时的膜拓扑变化。
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完全疏水的 HIV gp41 在磷脂双层中采取类融合的构象。

Fully hydrophobic HIV gp41 adopts a hemifusion-like conformation in phospholipid bilayers.

机构信息

Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139.

Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139

出版信息

J Biol Chem. 2019 Oct 4;294(40):14732-14744. doi: 10.1074/jbc.RA119.009542. Epub 2019 Aug 13.

DOI:10.1074/jbc.RA119.009542
PMID:31409642
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6779440/
Abstract

The HIV envelope glycoprotein mediates virus entry into target cells by fusing the virus lipid envelope with the cell membrane. This process requires large-scale conformational changes of the fusion protein gp41. Current understanding of the mechanisms with which gp41 induces membrane merger is limited by the fact that the hydrophobic N-terminal fusion peptide (FP) and C-terminal transmembrane domain (TMD) of the protein are challenging to characterize structurally in the lipid bilayer. Here we have expressed a gp41 construct that contains both termini, including the FP, the fusion peptide-proximal region (FPPR), the membrane-proximal external region (MPER), and the TMD. These hydrophobic domains are linked together by a shortened water-soluble ectodomain. We reconstituted this "short NC" gp41 into a virus-mimetic lipid membrane and conducted solid-state NMR experiments to probe the membrane-bound conformation and topology of the protein. C chemical shifts indicate that the C-terminal MPER-TMD is predominantly α-helical, whereas the N-terminal FP-FPPR exhibits β-sheet character. Water and lipid H polarization transfer to the protein revealed that the TMD is well-inserted into the lipid bilayer, whereas the FPPR and MPER are exposed to the membrane surface. Importantly, correlation signals between the FP-FPPR and the MPER are observed, providing evidence that the ectodomain is sufficiently collapsed to bring the N- and C-terminal hydrophobic domains into close proximity. These results support a hemifusion-like model of the short NC gp41 in which the ectodomain forms a partially folded hairpin that places the FPPR and MPER on the opposing surfaces of two lipid membranes.

摘要

HIV 包膜糖蛋白通过融合病毒脂质包膜和细胞膜来介导病毒进入靶细胞。这个过程需要融合蛋白 gp41 发生大规模构象变化。目前对于 gp41 诱导膜融合的机制的理解受到限制,因为该蛋白的疏水性 N 端融合肽 (FP) 和 C 端跨膜结构域 (TMD) 在脂质双层中结构特征难以确定。在这里,我们表达了一种 gp41 构建体,它包含两端,包括 FP、融合肽近端区 (FPPR)、膜近端外部区 (MPER) 和 TMD。这些疏水区由缩短的水溶性外域连接在一起。我们将这个“短 NC”gp41 重新构成病毒模拟脂质膜,并进行固态 NMR 实验来探测蛋白在膜结合状态下的构象和拓扑结构。C 化学位移表明 C 端的 MPER-TMD 主要是α螺旋,而 N 端的 FP-FPPR 则具有β折叠特征。水和脂质 H 的极化转移到蛋白上表明 TMD 很好地插入到脂质双层中,而 FPPR 和 MPER 则暴露在膜表面。重要的是,观察到 FP-FPPR 和 MPER 之间的相关信号,这提供了证据表明外域足够折叠,使 N 端和 C 端疏水区接近。这些结果支持了短 NC gp41 的半融合样模型,其中外域形成部分折叠的发夹结构,将 FPPR 和 MPER 置于两个脂质膜的相对表面上。