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在乙型肝炎病毒衣壳样颗粒上展示全链蛋白。

Displaying Whole-Chain Proteins on Hepatitis B Virus Capsid-Like Particles.

作者信息

Heger-Stevic Julia, Kolb Philipp, Walker Andreas, Nassal Michael

机构信息

Internal Medicine II/Molecular Biology, University Hospital Freiburg, Freiburg, Germany.

Department of Medical Microbiology and Hygiene, Institute of Virology, University Hospital Freiburg, Freiburg, Germany.

出版信息

Methods Mol Biol. 2018;1776:503-531. doi: 10.1007/978-1-4939-7808-3_33.

Abstract

The highly immunogenic icosahedral capsid of hepatitis B virus (HBV) can be exploited as a nanoparticulate display platform for heterologous molecules. Its constituent core protein (HBc) of only ~180 amino acids spontaneously forms capsid-like particles (CLPs) even in E. coli. The immunodominant c/e1 epitope in the center of the HBc primary sequence comprises a solvent-exposed loop that tolerates insertions of flexible peptide sequences yet also of selected whole proteins as long as their 3D structures fit into the two acceptor sites. This constraint is largely overcome in the SplitCore system, where the sequences flanking the loop are expressed as two separate but self-complementing entities, with the foreign sequence fixed to the carrier at one end only. Both the contiguous and the split type of CLP strongly enhance immunogenicity of the displayed sequence but also nonvaccine applications can easily be envisaged. After a brief survey of the basic features of the two HBc carrier forms, we provide conceptual guidelines concerning which foreign proteins are likely to be presentable, or not, on either carrier type. We describe generally applicable protocols for CLP expression in E. coli, cell lysis and CLP enrichment by sucrose gradient velocity sedimentation, plus a simple but meaningful gel electrophoretic assay to assess proper particle formation.

摘要

乙型肝炎病毒(HBV)高度免疫原性的二十面体衣壳可被用作异源分子的纳米颗粒展示平台。其仅约180个氨基酸的组成性核心蛋白(HBc)即使在大肠杆菌中也能自发形成衣壳样颗粒(CLP)。HBc一级序列中心的免疫显性c/e1表位包含一个暴露于溶剂中的环,该环能够耐受柔性肽序列的插入,也能耐受选定的完整蛋白质的插入,只要它们的三维结构适合两个受体位点即可。在SplitCore系统中,这一限制在很大程度上得到了克服,在该系统中,环两侧的序列被表达为两个独立但自我互补的实体,外源序列仅在一端固定于载体上。连续型和分裂型CLP都能强烈增强所展示序列的免疫原性,但也很容易设想其非疫苗应用。在简要概述了两种HBc载体形式的基本特征后,我们提供了概念指南,说明哪些外源蛋白可能或不可能在任何一种载体类型上呈现。我们描述了在大肠杆菌中表达CLP、细胞裂解以及通过蔗糖梯度速度沉降富集CLP的通用方案,以及一种简单但有意义的凝胶电泳测定法,以评估正确的颗粒形成。

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