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金黄色葡萄球菌 Panton-Valentine 白细胞毒素 LukS-PV 和 LukF-PV 亚单位的工程化用于诊断和治疗应用。

Engineering of the LukS-PV and LukF-PV subunits of Staphylococcus aureus Panton-Valentine leukocidin for diagnostic and therapeutic applications.

机构信息

School of Molecular Medical Sciences, Centre for Biomolecular Sciences, University of Nottingham, University Park, Nottingham NG7 2UH, UK.

出版信息

BMC Biotechnol. 2013 Nov 19;13:103. doi: 10.1186/1472-6750-13-103.

Abstract

BACKGROUND

Staphylococcus aureus produces several toxins, including Panton-Valentine leukocidin (PVL). The involvement of PVL in primary skin infections, necrotizing pneumonia, musculoskeletal disorders, brain abscess, and other diseases, some of which are life-threatening, has been reported. Following expert opinion, we aimed to provide the tools for establishment of sequence-based diagnostics and therapeutics for those conditions. We engineered the synergistic S and F (LukS-PV and LukF-PV respectively) pro-toxin subunits from Staphylococcus aureus USA400 into separate expression E. coli BL21(DE3)-pLysS hosts.

RESULTS

Following Nickel affinity chromatography (NAC), the F subunit came out without bands of impurity. The S sub-unit did not come off very pure after NAC thus necessitating further purification by size exclusion and ion-exchange chromatography. The purification plots showed that the BioLogic-LP and AKTA systems are reliable for following the progress of the chromatographic purification in real-time. Computer predicted Mw for the 6His-LukF-PV and 6His-LukS-PV were 35645.41 Da and 33530.04 Da respectively, while the mass spectrometry results were 35643.57 Da and 33528.34 Da respectively.

CONCLUSION

The BioLogic-LP and AKTA systems are commendable for reliability and user-friendliness. As a recent work elsewhere also reported that a second round of chromatography was necessary to purify the S subunit after the first attempt, we speculate that the S subunit might contain yet unidentified motif(s) requiring further treatment. The purified S and F sub-units of PVL were supplied to the Nottingham Cancer Immunotherapy group who used them to establish sequence-based monoclonal antibodies for diagnostic and therapeutic uses targeting PVL.

摘要

背景

金黄色葡萄球菌产生多种毒素,包括杀白细胞素 Panton-Valentine(PVL)。据报道,PVL 参与原发性皮肤感染、坏死性肺炎、肌肉骨骼疾病、脑脓肿和其他疾病的发生,其中一些疾病具有致命性。根据专家意见,我们旨在为这些疾病建立基于序列的诊断和治疗工具。我们将金黄色葡萄球菌 USA400 的协同 S 和 F(分别为 LukS-PV 和 LukF-PV)原毒素亚单位工程化到单独的表达大肠杆菌 BL21(DE3)-pLysS 宿主中。

结果

镍亲和层析(NAC)后,F 亚基没有杂质带。S 亚基在 NAC 后没有非常纯,因此需要进一步通过分子筛和离子交换层析进行纯化。纯化图谱表明,BioLogic-LP 和 AKTA 系统可可靠地实时跟踪色谱纯化的进展。计算机预测 6His-LukF-PV 和 6His-LukS-PV 的Mw 分别为 35645.41 Da 和 33530.04 Da,而质谱结果分别为 35643.57 Da 和 33528.34 Da。

结论

BioLogic-LP 和 AKTA 系统可靠且易于使用。正如其他最近的一项工作也报道的那样,第一次尝试后,需要进行第二轮色谱纯化才能纯化 S 亚基,我们推测 S 亚基可能含有尚未鉴定的需要进一步处理的 motif(s)。我们向诺丁汉癌症免疫治疗小组提供了纯化的 PVL S 和 F 亚单位,他们使用这些亚单位建立了基于序列的单克隆抗体,用于诊断和治疗 PVL。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae30/3870988/8e4e44587762/1472-6750-13-103-1.jpg

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