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Evaluation of a surface-sampling probe electrospray mass spectrometry system for the analysis of surface-deposited and affinity-captured proteins

机译:评估表面采样探针电喷雾质谱系统以分析表面沉积和亲和捕获的蛋白质

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A combined self-aspirating electrospray emitter/surfacing-sampling probe coupled with an ion trap mass spectrometer was used to sample and mass analyze proteins from surfaces. The sampling probe mass spectrometer system was used to sample and detect lysozyme that had been deposited onto a glass slide using a piezoelectric spotter or murine gamma-interferon affinity captured on a glass slide using surface-immobilized anti-gamma-interferon antibody. The detection level for surface deposited lysozyme (spot size <= 200 mu m) was approximately 1.0 fmol (similar to 100 fmol/mm(2)) as determined from the ability to measure accurately the protein molecular mass from the mass spectrum acquired by sampling the deposit. These detection limits may be sufficient for certain applications in which protein fractions from a separation method are collected onto a surface. Radiolabeled proteins were used to quantify the surface density of immobilized antibody and the efficiency of capture of the gamma-interferon on glass and higher surface area ceramic supports. The capture density of gamma-interferon at surface saturation ranged from about 23 to 50 fmol/mm(2) depending on the capture surface. Nonetheless, mass spectrometric detection of affinity capture protein was successful in some cases, but the results were not reproducible. Thus, improvement of the sampling system, ionization efficiency and/or capture density will be necessary for practical sampling of affinity-captured proteins. The means to accomplish improved sampling system detection limits and to increase the absolute amounts of protein captured per unit area are discussed. Published in 2006 by John Wiley & Sons, Ltd.
机译:结合自吸式电喷雾发射器/表面采样探针与离子阱质谱仪结合使用,对表面蛋白质进行采样和质量分析。使用采样探针质谱仪系统对使用表面固定化抗γ-干扰素抗体捕获的压电斑点或鼠γ-干扰素亲和力在玻璃片上沉积的溶菌酶进行采样和检测。表面沉积的溶菌酶(斑点大小<= 200μm)的检测水平约为1.0 fmol(类似于100 fmol / mm(2)),这取决于从通过采样获得的质谱图中准确测量蛋白质分子质量的能力存款。这些检测限对于某些应用可能是足够的,在这些应用中,将来自分离方法的蛋白质馏分收集到表面上。放射性标记的蛋白质用于定量固定化抗体的表面密度,以及在玻璃和更高表面积的陶瓷载体上捕获γ-干扰素的效率。 γ-干扰素在表面饱和时的捕获密度范围为约23至50 fmol / mm(2),具体取决于捕获表面。但是,在某些情况下质谱检测亲和捕获蛋白是成功的,但结果不可重复。因此,对于亲和力捕获的蛋白质的实际采样,采样系统,电离效率和/或捕获密度的改进将是必需的。讨论了改善采样系统检测极限并增加单位面积捕获的蛋白质绝对量的方法。 John Wiley&Sons,Ltd.于2006年出版。

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