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在役加工液中优势循环的游离分枝杆菌蛋白及其抗原性潜能。

Dominant Circulating Cell-free Mycobacterial Proteins in In-use Machining Fluid and their Antigenicity Potential.

机构信息

Pulmonary/Microbial Pathogenesis and Immunotoxicology Laboratory, Department of Environmental and Public Health Sciences, University of Cincinnati College of Medicine, Cincinnati, OH45267-0056, USA.

Vermont Biomedical Research Network Proteomics Facility, University of Vermont, Burlington, VT05405, USA.

出版信息

Curr Protein Pept Sci. 2024;25(8):613-625. doi: 10.2174/0113892037291635240405042554.

Abstract

BACKGROUND

Occupational exposure to industrial Metalworking Fluid (MWF) colonized by (MI) has been associated with immune lung disease hypersensitivity pneumonitis (HP) in machinists. This warrants regular fluid monitoring for early detection of mycobacterial proteins, especially those with antigenic potential.

OBJECTIVE

To detect and identify dominant MI proteins and antigens directly from the field-drawn in-use MWF using an integrated immunoproteomic-immunoinformatic approach.

METHODS

An MI-positive MWF selected by DNA-based screening of several field-drawn MWF samples was cultured to isolate the colonizing strain and profiled for dominant circulating cell-free (ccf) MI proteins, including antigens using an integrated immunoproteomic (1D- and 2Dgel fractionation of seroreactive proteins combined with shotgun proteomic analysis using LC-MS/MS) and immunoinformatic strategy.

RESULTS

A new MI strain (MJY-27) was identified. The gel fractionated MI protein bands (1Dgel) or spots (2D-gel) seroreactive with anti-MI sera probes (Rabbit and Patient sera) yielded 86 MI proteins, 29 of which showed peptide abundance. T-cell epitope analysis revealed high (90-100%) binding frequency for HLA-I & II alleles for 13 of the 29 proteins. Their antigenicity analysis revealed the presence of 6 to 37 antigenic determinants. Interestingly, one of the identified candidates corresponded to an experimentally validated strong B- and T-cell antigen (AgD) from our laboratory culture-based studies.

CONCLUSION

This first report on dominant proteins, including putative antigens of M. immunogenum prevalent in field in-use MWF, is a significant step towards the overall goal of developing fluid monitoring for exposure and disease risk assessment for HP development in machining environments.

摘要

背景

从事金属加工液(MWF)行业的工人如果接触到被 (MI) 污染的工业 MWF,可能会患上免疫性肺部疾病—— 过敏性肺炎(HP)。这就需要定期对 MWF 进行监测,以早期发现分枝杆菌蛋白,尤其是那些具有抗原性的蛋白。

目的

采用免疫蛋白质组学-免疫信息学综合方法,直接从现场使用的 MWF 中检测和鉴定优势 MI 蛋白和抗原。

方法

从多个现场抽取的 MWF 样本中进行 DNA 筛查,选择一株 MI 阳性 MWF 进行培养,分离出定植菌株,并对其优势循环无细胞(ccf)MI 蛋白进行分析,包括抗原,采用免疫蛋白质组学(血清反应性蛋白的 1D 和 2D 凝胶分离与 LC-MS/MS 联用的鸟枪法蛋白质组学分析)和免疫信息学策略。

结果

鉴定出一株新的 MI 菌株(MJY-27)。与抗 MI 血清探针(兔血清和患者血清)发生血清反应的 MI 蛋白条带(1Dgel)或斑点(2D-gel)可得到 86 种 MI 蛋白,其中 29 种蛋白具有肽丰度。T 细胞表位分析显示,这 29 种蛋白中有 13 种与 HLA-I 和 II 等位基因的结合频率很高(90-100%)。抗原性分析显示,这些蛋白存在 6 到 37 个抗原决定簇。有趣的是,其中一个鉴定出的候选蛋白与我们实验室基于培养的研究中验证的一种强 B 细胞和 T 细胞抗原(AgD)相对应。

结论

这是首次报道流行于现场使用的 MWF 中的 MI 优势蛋白,包括可能的抗原,这是朝着开发用于监测暴露和评估机械加工环境中 HP 发展风险的流体监测的总体目标迈出的重要一步。

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