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人乳头瘤病毒11型病毒样颗粒在体外的定量拆解与重组

Quantitative disassembly and reassembly of human papillomavirus type 11 viruslike particles in vitro.

作者信息

McCarthy M P, White W I, Palmer-Hill F, Koenig S, Suzich J A

机构信息

MedImmune, Inc., Gaithersburg, Maryland 20878, USA.

出版信息

J Virol. 1998 Jan;72(1):32-41. doi: 10.1128/JVI.72.1.32-41.1998.

Abstract

The human papillomavirus (HPV) capsid is primarily composed of a structural protein denoted L1, which forms both pentameric capsomeres and capsids composed of 72 capsomeres. The L1 protein alone is capable of self-assembly in vivo into capsidlike structures referred to as viruslike particles (VLPs). We have determined conditions for the quantitative disassembly of purified HPV-11 L1 VLPs to the level of capsomeres, demonstrating that disulfide bonds alone are essential to maintaining long-term HPV-11 L1 VLP structure at physiological ionic strength. The ionic strength of the disassembly reaction was also important, as increased NaCl concentrations inhibited disassembly. Conversely, chelation of cations had no effect on disassembly. Quantitative reassembly to a homogeneous population of 55-nm, 150S VLPs was reliably achieved by the re-formation of disulfide linkages following removal of reducing agent at near-neutral pH and moderate NaCl concentration. HPV-11 L1 VLPs could also be dissociated by treatment with carbonate buffer at pH 9.6, but VLPs could not be regenerated following carbonate treatment. When probed with conformationally sensitive and/or neutralizing monoclonal antibodies, both capsomeres generated by disulfide reduction of purified VLPs and reassembled VLPs formed from capsomeres upon removal of reducing agents exhibited epitopes found on the surface of authentic HPV-11 virions. Antisera raised against either purified VLP starting material or reassembled VLPs similarly neutralized infectious HPV-11 virions. The ability to disassemble and reassemble VLPs in vitro and in bulk allows basic features of capsid assembly to be studied and also opens the possibility of packaging selected exogenous compounds within the reassembled VLPs.

摘要

人乳头瘤病毒(HPV)衣壳主要由一种名为L1的结构蛋白组成,L1既能形成五聚体壳粒,也能形成由72个壳粒组成的衣壳。单独的L1蛋白能够在体内自组装成称为病毒样颗粒(VLP)的衣壳样结构。我们已经确定了将纯化的HPV-11 L1 VLP定量拆解为壳粒水平的条件,证明在生理离子强度下,仅二硫键对于维持HPV-11 L1 VLP的长期结构至关重要。拆解反应的离子强度也很重要,因为NaCl浓度增加会抑制拆解。相反,阳离子螯合对拆解没有影响。在接近中性的pH值和适度的NaCl浓度下去除还原剂后,通过二硫键的重新形成,可可靠地实现向均匀的55纳米、150S VLP群体的定量重新组装。HPV-11 L1 VLP也可以用pH 9.6的碳酸盐缓冲液处理进行解离,但碳酸盐处理后VLP无法再生。当用构象敏感和/或中和单克隆抗体进行检测时,通过纯化VLP的二硫键还原产生的壳粒以及去除还原剂后由壳粒形成的重新组装的VLP均呈现出在 authentic HPV-11病毒粒子表面发现的表位。针对纯化的VLP起始材料或重新组装的VLP产生的抗血清同样能中和感染性HPV-11病毒粒子。在体外大量拆解和重新组装VLP的能力使得能够研究衣壳组装的基本特征,也为在重新组装的VLP中包装选定的外源化合物开辟了可能性。

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