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Mumps Virus Matrix Fusion and Nucleocapsid Proteins Cooperate for Efficient Production of Virus-Like Particles

机译:流行性腮腺炎病毒基质融合蛋白和核衣壳蛋白协同工作可高效生产类似病毒的颗粒

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摘要

Paramyxovirus particles, like other enveloped virus particles, are formed by budding from membranes of infected cells. To define mumps virus (MuV) proteins important for this process, viral proteins were expressed either singly or in combination in mammalian cells to produce virus-like particles (VLPs). Only the MuV matrix (M) protein when expressed by itself was capable of inducing particle release, but the quantity of these M-alone particles was very small. Efficient production of mumps VLPs occurred only when the M protein was coexpressed together with other viral proteins, with maximum production achieved upon coexpression of the viral M, nucleocapsid (NP), and fusion (F) proteins together. Electron microscopy analysis confirmed that VLPs were morphologically similar to MuV virions. The two MuV glycoproteins were not equal contributors to particle formation. The F protein was a major contributor to VLP production, while the hemagglutinin-neuraminidase protein made a smaller contribution. Evidence for the involvement of class E protein machinery in VLP budding was obtained, with mumps VLP production inhibited upon expression of dominant-negative versions of the class E proteins Vps4A and Chmp4b. Disruption of the sequence 24-FPVI-27 within the MuV M protein led to poor VLP production, consistent with findings of earlier studies of a related sequence, FPIV, important for the budding of parainfluenza virus 5. Together, these results demonstrate that different MuV structural proteins cooperate together for efficient particle production and that particle budding likely involves host class E protein machinery.
机译:像其他包膜病毒颗粒一样,副粘病毒颗粒是从受感染细胞的膜上萌芽形成的。为了确定对这一过程重要的腮腺炎病毒(MuV)蛋白,病毒蛋白在哺乳动物细胞中单独表达或组合表达以产生病毒样颗粒(VLP)。仅当MuV基质(M)蛋白自身表达时,才能够诱导颗粒释放,但是这些仅M颗粒的数量非常少。仅当M蛋白与其他病毒蛋白一起共表达时,才产生腮腺炎VLP的有效产生,而当病毒M,核衣壳(NP)和融合蛋白(F)共同表达时,则达到了最大产量。电子显微镜分析证实VLP在形态上与MuV病毒粒子相似。这两种MuV糖蛋白对颗粒形成的贡献不同。 F蛋白是VLP产生的主要贡献者,而血凝素神经氨酸酶蛋白贡献较小。获得了有关E类蛋白机制参与VLP萌芽的证据,腮腺炎VLP的产生在E类蛋白Vps4A和Chmp4b的显性负型表达时受到抑制。 MuV M蛋白中序列24-FPVI-27的破坏导致VLP产生较差,这与早期研究相关序列FPIV的研究结果相符,FPIV对副流感病毒5的萌发很重要。这些结果共同表明,不同的MuV结构蛋白协同工作以有效地产生颗粒,并且颗粒出芽可能涉及宿主E类蛋白机制。

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