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开发一种液相色谱高分辨率质谱法用于定量埃博拉病毒样颗粒疫苗制剂中的病毒包膜糖蛋白。

Development of a liquid chromatography high resolution mass spectrometry method for the quantitation of viral envelope glycoprotein in Ebola virus-like particle vaccine preparations.

作者信息

Cazares Lisa H, Ward Michael D, Brueggemann Ernst E, Kenny Tara, Demond Paul, Mahone Christopher R, Martins Karen A O, Nuss Jonathan E, Glaros Trevor, Bavari Sina

机构信息

Molecular and Translational Sciences Division, U.S. Army Medical Research Institute of Infectious Diseases, Frederick, MD 21702 USA ; DOD Biotechnology High Performance Computing Software Applications Institute, Telemedicine and Advanced Technology Research Center, US Army Medical Research and Materiel Command, Fort Detrick, MD 21702 USA.

Molecular and Translational Sciences Division, U.S. Army Medical Research Institute of Infectious Diseases, Frederick, MD 21702 USA.

出版信息

Clin Proteomics. 2016 Sep 5;13(1):18. doi: 10.1186/s12014-016-9119-8. eCollection 2016.

Abstract

BACKGROUND

Ebola virus like particles (EBOV VLPs, eVLPs), are produced by expressing the viral transmembrane glycoprotein (GP) and structural matrix protein VP40 in mammalian cells. When expressed, these proteins self-assemble and bud from 'host' cells displaying morphology similar to infectious virions. Several studies have shown that rodents and non-human primates vaccinated with eVLPs are protected from lethal EBOV challenge. The mucin-like domain of envelope glycoprotein GP1 serves as the major target for a productive humoral immune response. Therefore GP1 concentration is a critical quality attribute of EBOV vaccines and accurate measurement of the amount of GP1 present in eVLP lots is crucial to understanding variability in vaccine efficacy.

METHODS

After production, eVLPs are characterized by determining total protein concentration and by western blotting, which only provides semi-quantitative information for GP1. Therefore, a liquid chromatography high resolution mass spectrometry (LC-HRMS) approach for accurately measuring GP1 concentration in eVLPs was developed. The method employs an isotope dilution strategy using four target peptides from two regions of the GP1 protein. Purified recombinant GP1 was generated to serve as an assay standard. GP1 quantitation in 5 eVLP lots was performed on an LTQ-Orbitrap Elite and the final quantitation was derived by comparing the relative response of 200 fmol AQUA peptide standards to the analyte response at 4 ppm.

RESULTS

Conditions were optimized to ensure complete tryptic digestion of eVLP, however, persistent missed cleavages were observed in target peptides. Additionally, N-terminal truncated forms of the GP1 protein were observed in all eVLP lots, making peptide selection crucial. The LC-HRMS strategy resulted in quantitation of GP1 with a lower limit of quantitation of 1 fmol and an average percent coefficient of variation (CV) of 7.6 %. Unlike western blot values, the LC-HRMS quantitation of GP1 in 5 eVLP vaccine lots exhibited a strong linear relationship (positive correlation) with survival (after EBOV challenge) in mice.

CONCLUSIONS

This method provides a means to rapidly determine eVLP batch quality based upon quantitation of antigenic GP1. By monitoring variability in GP1 content, the eVLP production process can be optimized, and the total amount of GP1 needed to confer protection accurately determined.

摘要

背景

埃博拉病毒样颗粒(EBOV VLPs,eVLPs)是通过在哺乳动物细胞中表达病毒跨膜糖蛋白(GP)和结构基质蛋白VP40产生的。这些蛋白表达后会自我组装并从“宿主”细胞中出芽,呈现出与感染性病毒粒子相似的形态。多项研究表明,用eVLPs接种的啮齿动物和非人灵长类动物可免受致死性埃博拉病毒攻击。包膜糖蛋白GP1的粘蛋白样结构域是有效体液免疫反应的主要靶点。因此,GP1浓度是埃博拉病毒疫苗的关键质量属性,准确测量eVLP批次中GP1的含量对于理解疫苗效力的变异性至关重要。

方法

生产后,通过测定总蛋白浓度和蛋白质印迹法对eVLPs进行表征,蛋白质印迹法仅能提供GP1的半定量信息。因此,开发了一种用于准确测量eVLPs中GP1浓度的液相色谱高分辨率质谱(LC-HRMS)方法。该方法采用同位素稀释策略,使用来自GP1蛋白两个区域的四种靶肽。生成纯化的重组GP1用作分析标准品。在LTQ-Orbitrap Elite上对5个eVLP批次中的GP1进行定量,最终定量是通过比较200 fmol AQUA肽标准品的相对响应与4 ppm下分析物的响应得出的。

结果

优化了条件以确保eVLP的胰蛋白酶完全消化,然而,在靶肽中观察到持续的漏切现象。此外,在所有eVLP批次中均观察到GP1蛋白的N端截短形式,这使得肽段选择至关重要。LC-HRMS策略实现了GP1的定量,定量下限为1 fmol,平均变异系数(CV)为7.6%。与蛋白质印迹值不同,5个eVLP疫苗批次中GP1的LC-HRMS定量与小鼠(埃博拉病毒攻击后)的存活率呈现出强线性关系(正相关)。

结论

该方法提供了一种基于抗原性GP1定量快速确定eVLP批次质量的手段。通过监测GP1含量的变异性,可以优化eVLP生产工艺,并准确确定提供保护所需的GP1总量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb78/5011338/897be072ccc0/12014_2016_9119_Fig1_HTML.jpg

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