Yan Li-Bo, Yu You-Jia, Zhang Qing-Bo, Tang Xiao-Qiong, Bai Lang, Huang FeiJun, Tang Hong
Center of Infectious Diseases, West China Hospital, Sichuan University, Chengdu, P. R. China.
Department of Forensic Pathology, Medical School of Basic and Forensic Sciences, Sichuan University, Chengdu, China.
Proteomics Clin Appl. 2018 May;12(3):e1700090. doi: 10.1002/prca.201700090. Epub 2018 Feb 6.
The aim of this study was to screen for novel host proteins that play a role in HBx augmenting Hepatitis B virus (HBV) replication.
Three HepG2 cell lines stably harboring different functional domains of HBx (HBx, HBx-Cm6, and HBx-Cm16) were cultured. ITRAQ technology integrated with LC-MS/MS analysis was applied to identify the proteome differences among these three cell lines.
In brief, a total of 70 different proteins were identified among HepG2-HBx, HepG2-HBx-Cm6, and HepG2-HBx-Cm16 by double repetition. Several differentially expressed proteins, including p90 ribosomal S6 kinase 2 (RSK2), were further validated. RSK2 was expressed at higher levels in HepG2-HBx and HepG2-HBx-Cm6 compared with HepG2-HBx-Cm16. Furthermore, levels of HBV replication intermediates were decreased after silencing RSK2 in HepG2.2.15. An HBx-minus HBV mutant genome led to decreased levels of HBV replication intermediates and these decreases were restored to levels similar to wild-type HBV by transient ectopic expression of HBx. After silencing RSK2 expression, the levels of HBV replication intermediates synthesized from the HBx-minus HBV mutant genome were not restored to levels that were observed with wild-type HBV by transient HBx expression.
Based on iTRAQ quantitative comparative proteomics, RSK2 was identified as a novel host protein that plays a role in HBx augmenting HBV replication.
本研究旨在筛选在HBx增强乙型肝炎病毒(HBV)复制过程中发挥作用的新型宿主蛋白。
培养了三种稳定携带不同功能域HBx(HBx、HBx-Cm6和HBx-Cm16)的HepG2细胞系。应用ITRAQ技术结合LC-MS/MS分析来鉴定这三种细胞系之间的蛋白质组差异。
简而言之,通过两次重复实验,在HepG2-HBx、HepG2-HBx-Cm6和HepG2-HBx-Cm16中总共鉴定出70种不同的蛋白质。包括p90核糖体S6激酶2(RSK2)在内的几种差异表达蛋白得到了进一步验证。与HepG2-HBx-Cm16相比,RSK2在HepG2-HBx和HepG2-HBx-Cm6中的表达水平更高。此外,在HepG2.2.15细胞中沉默RSK2后,HBV复制中间体的水平降低。不含HBx的HBV突变体基因组导致HBV复制中间体水平降低,通过瞬时异位表达HBx,这些降低的水平恢复到与野生型HBV相似的水平。在沉默RSK2表达后,由不含HBx的HBV突变体基因组合成的HBV复制中间体水平未通过瞬时HBx表达恢复到野生型HBV所观察到的水平。
基于ITRAQ定量比较蛋白质组学,RSK2被鉴定为一种在HBx增强HBV复制过程中发挥作用的新型宿主蛋白。