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纳米级蛋白质组学

Nanoscale proteomics.

作者信息

Shen Y, Tolić N, Masselon C, Pasa-Tolić L, Camp D G, Lipton M S, Anderson G A, Smith R D

机构信息

Biological Science Division, Pacific Northwest National Laboratory, Richland, WA 99352, USA.

出版信息

Anal Bioanal Chem. 2004 Feb;378(4):1037-45. doi: 10.1007/s00216-003-2329-8. Epub 2003 Nov 29.

Abstract

Efforts to develop a liquid chromatography (LC)/mass spectrometry (MS) technology for ultra-sensitive proteomics studies (i.e., nanoscale proteomics) are described. The approach combines high-efficiency nanoscale LC (separation peak capacity of approximately 10(3); 15-microm-i.d. packed capillaries with flow rates of 20 nL min(-1), the optimal separation linear velocity) with advanced MS, including high-sensitivity and high-resolution Fourier transform ion cyclotron resonance MS, to perform both single-stage MS and tandem MS (MS/MS) proteomic analyses. The technology enables broad protein identification from nanogram-size proteomics samples and allows the characterization of more abundant proteins from sub-picogram-size samples. Protein identification in such studies using MS is demonstrated from <75 zeptomole of a protein. The average proteome measurement throughput is approximately 50 proteins h(-1) using MS/MS during separations, presently requiring approximately 3 h sample(-1). Greater throughput (approximately 300 proteins h(-1)) and improved detection limits providing more comprehensive proteome coverage can be obtained by using the "accurate mass and time" tag approach developed in our laboratory. This approach provides a dynamic range of at least 10(6) for protein relative abundances and an improved basis for quantitation. These capabilities lay the foundation for studies from single or limited numbers of cells.

摘要

本文描述了为超灵敏蛋白质组学研究(即纳米级蛋白质组学)开发液相色谱(LC)/质谱(MS)技术的相关工作。该方法将高效纳米级液相色谱(分离峰容量约为10³;内径15微米的填充毛细管,流速为20纳升/分钟,即最佳分离线速度)与先进的质谱技术相结合,包括高灵敏度和高分辨率的傅里叶变换离子回旋共振质谱,以进行单级质谱和串联质谱(MS/MS)蛋白质组分析。该技术能够从纳克级蛋白质组学样品中广泛鉴定蛋白质,并能对亚皮克级样品中更丰富的蛋白质进行表征。在这类研究中,使用质谱从小于75zeptomole的蛋白质中实现了蛋白质鉴定。在分离过程中使用MS/MS时,平均蛋白质组测量通量约为50种蛋白质/小时,目前每个样品大约需要3小时。通过使用我们实验室开发的“精确质量和时间”标签方法,可以获得更高的通量(约300种蛋白质/小时)和更低的检测限,从而提供更全面的蛋白质组覆盖范围。这种方法为蛋白质相对丰度提供了至少10⁶的动态范围,并为定量分析提供了更好的基础。这些能力为从单个或有限数量的细胞进行研究奠定了基础。

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