首页> 外文期刊>Protein Expression and Purification >Full-length trimeric influenza virus hemagglutinin II membrane fusion protein and shorter constructs lacking the fusion peptide or transmembrane domain: Hyperthermostability of the full-length protein and the soluble ectodomain and fusion peptide make significant contributions to fusion of membrane vesicles
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Full-length trimeric influenza virus hemagglutinin II membrane fusion protein and shorter constructs lacking the fusion peptide or transmembrane domain: Hyperthermostability of the full-length protein and the soluble ectodomain and fusion peptide make significant contributions to fusion of membrane vesicles

机译:全长三聚体流感病毒血凝素II膜融合蛋白和缺少融合肽或跨膜结构域的较短构建体:全长蛋白和可溶性胞外域和融合肽的超热稳定性为膜囊泡的融合做出了重要贡献

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Influenza virus is a class I enveloped virus which is initially endocytosed into a host respiratory epithelial cell. Subsequent reduction of the pH to the 5-6 range triggers a structural change of the viral hemagglutinin II (HA2) protein, fusion of the viral and endosomal membranes, and release of the viral nucleocapsid into the cytoplasm. HA2 contains fusion peptide (FP), soluble ectodomain (SE), transmembrane (TM), and intraviral domains with respective lengths of 25, 160, 25, and 10 residues. The present work provides a straightforward protocol for producing and purifying mg quantities of full-length HA2 from expression in bacteria. Biophysical and structural comparisons are made between full-length HA2 and shorter constructs including SHA2 equivalent to SE, FHA2 equivalent to FP + SE, and SHA2-TM equivalent to SE + TM constructs. The constructs are helical in detergent at pH 7.4 and the dominant trimer species. The proteins are highly thermostable in decylmaltoside detergent with T-m > 90 degrees C for HA2 with stabilization provided by the SE, FP, and TM domains. The proteins are likely in a trimer-of-hairpins structure, the final protein state during fusion. All constructs induce fusion of negatively-charged vesicles at pH 5.0 with much less fusion at pH 7.4. Attractive protein/vesicle electrostatics play a role in fusion, as the proteins are positively-charged at pH 5.0 and negatively-charged at pH 7.4 and the pH-dependence of fusion is reversed for positively-charged vesicles. Comparison of fusion between constructs supports significant contributions to fusion from the SE and the FP with little effect from the TM. (C) 2015 Elsevier Inc. All rights reserved.
机译:流感病毒是一类包膜病毒,最初会被内吞进入宿主呼吸道上皮细胞。随后将pH降低至5-6范围会触发病毒血凝素II(HA2)蛋白的结构变化,病毒膜和内体膜的融合以及病毒核衣壳释放到细胞质中。 HA2包含融合肽(FP),可溶性胞外域(SE),跨膜(TM)和病毒内域,其长度分别为25、160、25和10个残基。本工作提供了一种直接的方案,用于从细菌中的表达中产生和纯化毫克量的全长HA2。在全长HA2和较短的构建体(包括与SE等效的SHA2,与FP + SE等效的FHA2和与SE + TM等效的SHA2-TM)之间进行生物物理和结构比较。该构建体在pH 7.4的去污剂和主要三聚体物种中呈螺旋状。蛋白质在T-m> 90℃的HA的癸基麦芽糖苷去污剂中具有很高的热稳定性,并具有SE,FP和TM域的稳定性。这些蛋白质可能处于发夹三聚体结构中,即融合过程中的最终蛋白质状态。所有构建体在pH 5.0诱导带负电荷的囊泡融合,而在pH 7.4融合少得多。有吸引力的蛋白质/囊泡静电在融合中发挥作用,因为蛋白质在pH 5.0时带正电荷,在pH 7.4时带负电荷,并且融合的pH依赖性对于带正电荷的囊泡是相反的。构建体之间融合的比较支持SE和FP对融合的显着贡献,而TM的影响很小。 (C)2015 Elsevier Inc.保留所有权利。

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