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通过实时测量固有荧光对 26S 蛋白酶体蛋白进行全分析质谱前的鉴定和定量。

Characterization and quantification of intact 26S proteasome proteins by real-time measurement of intrinsic fluorescence prior to top-down mass spectrometry.

机构信息

Department of Chemistry, University of Wisconsin - Madison, Madison, Wisconsin, United States of America.

出版信息

PLoS One. 2013;8(3):e58157. doi: 10.1371/journal.pone.0058157. Epub 2013 Mar 11.

Abstract

Quantification of gas-phase intact protein ions by mass spectrometry (MS) is impeded by highly-variable ionization, ion transmission, and ion detection efficiencies. Therefore, quantification of proteins using MS-associated techniques is almost exclusively done after proteolysis where peptides serve as proxies for estimating protein abundance. Advances in instrumentation, protein separations, and informatics have made large-scale sequencing of intact proteins using top-down proteomics accessible to the proteomics community; yet quantification of proteins using a top-down workflow has largely been unaddressed. Here we describe a label-free approach to determine the abundance of intact proteins separated by nanoflow liquid chromatography prior to MS analysis by using solution-phase measurements of ultraviolet light-induced intrinsic fluorescence (UV-IF). UV-IF is measured directly at the electrospray interface just prior to the capillary exit where proteins containing at least one tryptophan residue are readily detected. UV-IF quantification was demonstrated using commercially available protein standards and provided more accurate and precise protein quantification than MS ion current. We evaluated the parallel use of UV-IF and top-down tandem MS for quantification and identification of protein subunits and associated proteins from an affinity-purified 26S proteasome sample from Arabidopsis thaliana. We identified 26 unique proteins and quantified 13 tryptophan-containing species. Our analyses discovered previously unidentified N-terminal processing of the β6 (PBF1) and β7 (PBG1) subunit - such processing of PBG1 may generate a heretofore unknown additional protease active site upon cleavage. In addition, our approach permitted the unambiguous identification and quantification both isoforms of the proteasome-associated protein DSS1.

摘要

采用质谱(MS)对气相完整蛋白质离子进行定量会受到复杂多变的离子化、离子传输和离子检测效率的影响。因此,MS 相关技术几乎仅在蛋白质经酶解后,通过肽段来估计蛋白质丰度,以此对蛋白质进行定量。仪器设备、蛋白质分离和信息学的进步使使用自上而下的蛋白质组学技术对完整蛋白质进行大规模测序成为可能;然而,使用自上而下的工作流程对蛋白质进行定量在很大程度上尚未得到解决。在这里,我们描述了一种无需标记的方法,即在进行 MS 分析之前,通过纳流液相色谱分离完整蛋白质,并通过溶液相测量紫外线诱导的固有荧光(UV-IF)来测定其丰度。在毛细管出口处,直接在电喷雾接口处测量 UV-IF,在该处可以很容易地检测到至少含有一个色氨酸残基的蛋白质。使用市售的蛋白质标准品对 UV-IF 定量进行了验证,结果表明其比 MS 离子电流提供了更准确和更精确的蛋白质定量。我们评估了 UV-IF 与自上而下的串联 MS 平行使用进行定量和鉴定拟南芥亲和纯化 26S 蛋白酶体样品中的蛋白质亚基和相关蛋白质的效果。我们鉴定了 26 种独特的蛋白质,并定量了 13 种含有色氨酸的物种。我们的分析发现了 β6(PBF1)和 β7(PBG1)亚基的以前未识别的 N 端加工 - PBG1 的这种加工可能在切割后生成一个以前未知的额外蛋白酶活性位点。此外,我们的方法还能够明确鉴定和定量蛋白酶体相关蛋白 DSS1 的两种同工型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0807/3594244/09c97c85d583/pone.0058157.g001.jpg

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