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传染性成熟寨卡病毒颗粒的不依赖于蛋白酶的生物合成

pr-independent biogenesis of infectious mature Zika virus particles.

作者信息

Dowd Kimberly A, Schroeder Michelle, Sanchez Egan, Brumbaugh Beniah, Foreman Bryant M, Burgomaster Katherine E, Shi Wei, Wang Lingshu, Caputo Natalie, Gordon David N, Schwartz Cindi L, Hansen Bryan T, Aleshnick Maya, Kong Wing-Pui, Morabito Kaitlyn M, Hickman Heather D, Graham Barney S, Fischer Elizabeth R, Pierson Theodore C

机构信息

Arbovirus Immunity Section, Vaccine Research Center, NIAID, NIH; Bethesda, 20892, USA.

Research Technologies Branch, Microscopy Unit, Rocky Mountain Laboratories, Division of Intramural Research, NIAID, NIH; Hamilton, 59840, USA.

出版信息

bioRxiv. 2024 Sep 12:2024.09.12.612520. doi: 10.1101/2024.09.12.612520.

Abstract

Flavivirus assembly at the endoplasmic reticulum is driven by the structural proteins envelope (E) and premembrane (prM). Here, contrary to the established paradigm for flavivirus assembly, we demonstrate that the biogenesis of flavivirus particles does not require an intact prM nor proteolytic activation. The expression of E preceded by a truncated version of prM (M-E) was sufficient for the formation of non-infectious Zika virus subviral particles and pseudo-infectious reporter virions. Subviral particles encoded by a ZIKV M-E DNA vaccine elicited a neutralizing antibody response that was insensitive to the virion maturation state, a feature of flavivirus humoral immunity shown to correlate with protection. M-E vaccines that uniformly present structural features shared with mature virions offer a higher quality and broadly applicable approach to flavivirus vaccination.

摘要

黄病毒在内质网的组装由结构蛋白包膜(E)和前体膜(prM)驱动。在此,与既定的黄病毒组装范式相反,我们证明黄病毒颗粒的生物发生既不需要完整的prM,也不需要蛋白水解激活。由截短版prM(M-E)前置的E的表达足以形成非感染性寨卡病毒亚病毒颗粒和假感染性报告病毒粒子。由寨卡病毒M-E DNA疫苗编码的亚病毒颗粒引发了对病毒体成熟状态不敏感的中和抗体反应,这是黄病毒体液免疫的一个特征,已证明与保护作用相关。均匀呈现与成熟病毒体共有的结构特征的M-E疫苗为黄病毒疫苗接种提供了更高质量且广泛适用的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a6b/11452192/8a07b78ad5af/nihpp-2024.09.12.612520v1-f0001.jpg

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