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本文引用的文献

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Minimal aggregate size and minimal fusion unit for the first fusion pore of influenza hemagglutinin-mediated membrane fusion.流感血凝素介导的膜融合首个融合孔的最小聚集体大小和最小融合单位
Biophys J. 2000 Jan;78(1):227-45. doi: 10.1016/S0006-3495(00)76587-8.
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N- and C-terminal residues combine in the fusion-pH influenza hemagglutinin HA(2) subunit to form an N cap that terminates the triple-stranded coiled coil.N 端和 C 端残基在融合 pH 流感血凝素 HA(2) 亚基中结合,形成一个终止三链卷曲螺旋的 N 帽。
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Membrane fusion by surrogate receptor-bound influenza haemagglutinin.通过替代受体结合的流感血凝素进行膜融合。
Virology. 1999 May 10;257(2):415-23. doi: 10.1006/viro.1999.9624.
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pH-induced conformational changes of membrane-bound influenza hemagglutinin and its effect on target lipid bilayers.pH诱导的膜结合型流感血凝素的构象变化及其对靶脂质双层的影响。
Protein Sci. 1998 Nov;7(11):2359-73. doi: 10.1002/pro.5560071113.
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A mechanism of protein-mediated fusion: coupling between refolding of the influenza hemagglutinin and lipid rearrangements.蛋白质介导的融合机制:流感血凝素重折叠与脂质重排之间的偶联
Biophys J. 1998 Sep;75(3):1384-96. doi: 10.1016/S0006-3495(98)74056-1.
6
The pathway of membrane fusion catalyzed by influenza hemagglutinin: restriction of lipids, hemifusion, and lipidic fusion pore formation.流感血凝素催化的膜融合途径:脂质限制、半融合和脂质融合孔形成。
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Receptor-triggered membrane association of a model retroviral glycoprotein.受体触发的模型逆转录病毒糖蛋白的膜结合
Proc Natl Acad Sci U S A. 1998 Mar 3;95(5):2580-5. doi: 10.1073/pnas.95.5.2580.
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How do viruses enter cells? The HIV coreceptors teach us a lesson of complexity.病毒是如何进入细胞的?HIV共受体为我们上了一堂关于复杂性的课。
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Influenza hemagglutinin is spring-loaded by a metastable native conformation.流感血凝素由一种亚稳态天然构象进行弹簧加载。
Proc Natl Acad Sci U S A. 1997 Dec 23;94(26):14306-13. doi: 10.1073/pnas.94.26.14306.
10
Conformational changes in cholera toxin B subunit-ganglioside GM1 complexes are elicited by environmental pH and evoke changes in membrane structure.霍乱毒素B亚基-神经节苷脂GM1复合物的构象变化由环境pH值引发,并引起膜结构的变化。
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受体结合导致流感血凝素重新折叠成具有融合能力构象的延迟:一种假说。

Delay of influenza hemagglutinin refolding into a fusion-competent conformation by receptor binding: a hypothesis.

作者信息

Leikina E, Markovic I, Chernomordik L V, Kozlov M M

机构信息

Section on Membrane Biology, Laboratory of Cellular and Molecular Biophysics, National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, Maryland 20892 USA.

出版信息

Biophys J. 2000 Sep;79(3):1415-27. doi: 10.1016/S0006-3495(00)76393-4.

DOI:10.1016/S0006-3495(00)76393-4
PMID:10969003
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1301035/
Abstract

Two subunits of influenza hemagglutinin (HA), HA1 and HA2, represent one of the best-characterized membrane fusion machines. While a low pH conformation of HA2 mediates the actual fusion, HA1 establishes a specific connection between the viral and cell membranes via binding to the sialic acid-containing receptors. Here we propose that HA1 may also be involved in modulating the kinetics of HA refolding. We hypothesized that binding of the HA1 subunit to its receptor restricts the major refolding of the low pH-activated HA to a fusion-competent conformation and, in the absence of fusion, to an HA-inactivated state. Dissociation of the HA1-receptor connection was considered to be a slow kinetic step. To verify this hypothesis, we first analyzed a simple kinetic scheme accounting for the stages of dissociation of the HA1/receptor bonds, inactivation and fusion, and formulated experimentally testable predictions. Second, we verified these predictions by measuring the extent of fusion between HA-expressing cells and red blood cells. Three experimental approaches based on 1) the temporal inhibition of fusion by lysophosphatidylcholine, 2) rapid dissociation of the HA1-receptor connections by neuraminidase treatment, and 3) substitution of membrane-anchored receptors by a water-soluble sialyllactose all provided support for the proposed role of the release of HA1-receptor connections. Possible biological implications of this stage in HA refolding and membrane fusion are being discussed.

摘要

流感血凝素(HA)的两个亚基HA1和HA2是特征最为明确的膜融合机器之一。虽然HA2的低pH构象介导实际的融合过程,但HA1通过与含唾液酸的受体结合,在病毒膜和细胞膜之间建立了特定的连接。在此,我们提出HA1可能还参与调节HA重折叠的动力学过程。我们假设HA1亚基与其受体的结合将低pH激活的HA的主要重折叠限制在具有融合能力的构象,并且在没有融合的情况下,限制在HA失活状态。HA1 - 受体连接的解离被认为是一个缓慢的动力学步骤。为了验证这一假设,我们首先分析了一个简单的动力学方案,该方案考虑了HA1 /受体键的解离、失活和融合阶段,并制定了可通过实验验证的预测。其次,我们通过测量表达HA的细胞与红细胞之间的融合程度来验证这些预测。基于1)溶血磷脂酰胆碱对融合的时间抑制、2)神经氨酸酶处理对HA1 - 受体连接的快速解离以及3)用可溶性唾液乳糖替代膜锚定受体的三种实验方法,均为HA1 - 受体连接释放的拟议作用提供了支持。本文还讨论了这一阶段在HA重折叠和膜融合中的可能生物学意义。