[人乳头瘤病毒16假病毒颗粒的制备及低温电镜结构测定]。

Daning Wang, Yajing Liu, Qingbing Zheng, Zhihai Li, Fei Fan, Xinlin Liu, Shuo Song, Ying Gu, Ningshao Xia, Shaowei Li
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引用次数: 0

摘要

本研究的目的是建立一种可扩展的生产方法,利用悬浮液适应的HEK-293 FT细胞制备人乳头瘤病毒(HPV)16假病毒(PsV),并提高HPV PsV的纯化效率。此外,我们旨在解决hpv16psv的低温电镜(cryo-EM)结构。在培养过程中,通过逐步降低血清含量和加入抗结块剂,从贴壁细胞中产生HEK-293 FT细胞悬液。用L1/L2表达载体和pN31-EGFP质粒转染HEK-293 FT悬浮细胞,在Wave生物反应器中生成HPV16 PsV。细胞裂解后,采用蔗糖密度梯度和CsCl等密度梯度超离心纯化HPV16 PsV,最终滴度为8.2 × 10(5) TCID(50)/μL。免疫印迹法证实纯化的HPV16 PsV含有L1和l2蛋白,定量ELISA法测定L1浓度为156.0 μg/mL。最后利用FEI Tecnai G2F30电子显微镜和AUTO3 DEM对HPV16 PsV的低温电镜结构进行解析,分辨率为14 Å。结构表明HPV16 PsV以T=7的二面体晶格形式存在,其直径为600 Å。这些结果将有助于中和试验和HPV疫苗的抗血清,HPV16 PsV的高分辨率结构测定以及HPV L1和L2之间相互作用的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Preparation and Cryo-EM Structure Determination of Human Papillomavirus 16 Pseudovirion Derived from Suspension-adapted HEK293 Cells].

The goals of this study were to establish a scalable production method to prepare human papillomavirus(HPV)16pseudovirus (PsV) using suspension-adapted HEK-293 FT cells and to improve the purification efficiency of HPV PsV. Furthermore, we aimed to solve the cryo-electron microscopy (cryo-EM) structure of HPV16 PsV. The suspension f HEK-293 FT cells were generated from adherent cells by a stepwise decrease in serum content and the addition of an anti-clumping agent during culturing. The resultant HEK-293 FT suspension cells were transfected with an L1/L2 expression vector and pN31-EGFP plasmid to generate HPV16 PsV in the Wave Bioreactor. Following cell lysis,HPV16 PsV was purified by sucrose density gradient and subsequent CsCl iso-density gradient ultra-centrifugation The final titer of HPV16 PsV was 8.2 × 10(5) TCID(50)/μL. Purified HPV16 PsV was comfirmed to as contain L1 and L2protein by western blotting, and the L1 concentration was determined to be 156.0 μg/mL by quantitative ELISA. Finally, a FEI Tecnai G2F30 electron microscope and AUTO3 DEM were used to solve the cryoEM structure of HPV16 PsV at a resolution of 14 Å.The structure shows that HPV16 PsV exists as a T=7dicosahedral lattice, with a diameter of 600 Å. These results will be beneficial for neutralization assays and for anti-sera for HPV vaccines, the high-resolution structure determination of HPV16 PsV, and the investigation of interactions between HPV L1 and L2.

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