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蛋白质酶解物在纳米结构化硅片上的激光解吸电离质谱分析。

Laser desorption ionization mass spectrometry of protein tryptic digests on nanostructured silicon plates.

机构信息

Institut des Biomolécules Max Mousseron, UMR 5247, Universités Montpellier 1 et 2, CNRS, Bâtiment Chimie (17), Université Montpellier 2, Place Eugène Bataillon, 34095 Montpellier Cedex 5, France.

出版信息

J Proteomics. 2012 Apr 3;75(7):1973-90. doi: 10.1016/j.jprot.2011.12.039. Epub 2012 Jan 12.

Abstract

We report on the simple application of a new nanostructured silicon (NanoSi) substrate as laser desorption/ionization (LDI)-promoting surface for high-throughput identification of protein tryptic digests by a rapid MS profiling and subsequent MS/MS analysis. The NanoSi substrate is easily prepared by chemical etching of crystalline silicon in NH(4)F/HNO(3)/AgNO(3) aqueous solution. To assess the LDI performances in terms of sensitivity, repeatability and robustness, the detection of small synthetic peptides (380-1700Da) was investigated. Moreover, peptide sequencing was tackled. Various tryptic synthetic peptide mixtures were first characterized in MS and MS/MS experiments carried out on a single deposit. Having illustrated the capability to achieve peptide detection and sequencing on these ionizing surfaces in the same run, protein tryptic digests from Cytochrome C, β-Casein, BSA and Fibrinogen were then analyzed in the femtomolar range (from 50 fmol for Cytochrome C down to 2 fmol for Fibrinogen). Comparison of the NanoSi MS and MS/MS data with those obtained with sample conditioned in organic matrix demonstrated a great behavior for low mass responses. We demonstrated the capability of LDI on NanoSi to be a complementary method to MALDI peptide mass fingerprinting ensuring determination of peptide molecular weights and sequences for more efficient protein database searches.

摘要

我们报告了一种新的纳米结构化硅(NanoSi)基底的简单应用,该基底可作为激光解吸/电离(LDI)促进表面,用于通过快速 MS 分析和随后的 MS/MS 分析对蛋白质胰蛋白酶消化物进行高通量鉴定。NanoSi 基底可通过在 NH(4)F/HNO(3)/AgNO(3)水溶液中对晶体硅进行化学蚀刻来轻松制备。为了评估在灵敏度、重复性和稳健性方面的 LDI 性能,研究了小合成肽(380-1700Da)的检测。此外,还进行了肽测序。首先在单个沉积物上进行的 MS 和 MS/MS 实验中对各种胰蛋白酶合成肽混合物进行了表征。在同一运行中,在这些电离表面上实现了肽检测和测序的能力之后,分析了细胞色素 C、β-酪蛋白、BSA 和纤维蛋白原的胰蛋白酶消化物,其检测限低至 50 fmol(对于细胞色素 C),低至 2 fmol(对于纤维蛋白原)。与用有机基质处理的样品获得的 NanoSi MS 和 MS/MS 数据进行比较,表明对低质量响应的性能良好。我们证明了 LDI 在 NanoSi 上作为 MALDI 肽质量指纹图谱的补充方法的能力,确保了肽分子量和序列的确定,从而更有效地进行蛋白质数据库搜索。

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