首页> 美国卫生研究院文献>Journal of Virology >Conserved Leucines in N-Terminal Heptad Repeat HR1 of Envelope Fusion Protein F of Group II Nucleopolyhedroviruses Are Important for Correct Processing and Essential for Fusogenicity
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Conserved Leucines in N-Terminal Heptad Repeat HR1 of Envelope Fusion Protein F of Group II Nucleopolyhedroviruses Are Important for Correct Processing and Essential for Fusogenicity

机译:II组核多角体病毒的信封融合蛋白F的N端七肽重复序列HR1中的保守亮氨酸对于正确加工和融合性至关重要

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摘要

The heptad repeat (HR), a conserved structural motif of class I viral fusion proteins, is responsible for the formation of a six-helix bundle structure during the envelope fusion process. The insect baculovirus F protein is a newly found budded virus envelope fusion protein which possesses common features to class I fusion proteins, such as proteolytic cleavage and the presence of an N-terminal open fusion peptide and multiple HR domains on the transmembrane subunit F1. Similar to many vertebrate viral fusion proteins, a conserved leucine zipper motif is predicted in this HR region proximal to the fusion peptide in baculovirus F proteins. To facilitate our understanding of the functional role of this leucine zipper-like HR1 domain in baculovirus F protein synthesis, processing, and viral infectivity, key leucine residues (Leu209, Leu216, and Leu223) were replaced by alanine (A) or arginine (R), respectively. By using Autographa californica multicapsid nucleopolyhedrovirus (AcMNPV) as a pseudotype expression system, we demonstrated that all mutant F proteins incorporated into budded virus, indicating that leucine substitutions did not affect intercellular trafficking of F. Furin-like protease cleavage was not affected by any of the leucine substitutions; however, the disulfide bridging and N-linked glycosylation patterns were partly altered. Single substitutions in HR1 showed that the three leucine residues were critical for F fusogenicity and the rescue of AcMNPV infectivity. Our results support the view that the leucine zipper-like HR1 domain is important to safeguard the proper folding, glycosylation, and fusogenicity of baculovirus F proteins.
机译:七类重复序列(HR)是I类病毒融合蛋白的保守结构基序,负责包膜融合过程中六螺旋束结构的形成。昆虫杆状病毒F蛋白是新发现的芽状病毒包膜融合蛋白,具有I类融合蛋白的共同特征,例如蛋白水解和跨膜亚基F1上存在N端开放融合肽和多个HR域。与许多脊椎动物病毒融合蛋白相似,在杆状病毒F蛋白中接近融合肽的HR区中,保守的亮氨酸拉链基序被预测。为了促进我们理解这种亮氨酸拉链样HR1域在杆状病毒F蛋白合成,加工和病毒感染性中的功能作用,将关键的亮氨酸残基(Leu209,Leu216和Leu223)替换为丙氨酸(A)或精氨酸(R) ), 分别。通过使用加州产的Autographa加州多衣壳核多角体病毒(AcMNPV)作为假型表达系统,我们证明了所有掺入萌芽病毒中的突变F蛋白,表明亮氨酸取代不会影响F的细胞间运输。弗林蛋白酶样蛋白酶切割不受任何亮氨酸取代;然而,二硫键桥接和N-连接的糖基化模式被部分改变。 HR1中的单取代显示三个亮氨酸残基对于F融合和挽救AcMNPV感染力至关重要。我们的结果支持以下观点:亮氨酸拉链样HR1域对于维护杆状病毒F蛋白的正确折叠,糖基化和融合具有重要意义。

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