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通过气相分级法接近完整的过氧化物酶体表征。

Approaching complete peroxisome characterization by gas-phase fractionation.

作者信息

Yi Eugene C, Marelli Marcello, Lee Hookeun, Purvine Samuel O, Aebersold Ruedi, Aitchison John D, Goodlett David R

机构信息

The Institute for Systems Biology, Seattle, WA 98103, USA.

出版信息

Electrophoresis. 2002 Sep;23(18):3205-16. doi: 10.1002/1522-2683(200209)23:18<3205::AID-ELPS3205>3.0.CO;2-Y.

Abstract

We examined the utility of gas-phase fractionation (GPF) in the m/z dimension to increase proteome coverage and reproducibility of peptide ion selection by direct microliquid chromatography/electrospray ionization-tandem mass spectrometry (microLC/ESI-MS/MS) analysis of the peptides produced by proteolytic digestion of unfractionated proteins from a yeast whole-cell lysate and in a peroxisomal membrane protein fraction derived from isolated yeast peroxisomes. We also investigated GPF in the relative ion intensity dimension and propose denoting the two types of GPF as GPF(m/z) and GPF(RI). Comparison of results of direct nuLC/ESI-MS/MS analysis of the unfractionated mixture of peptides from proteolysis of a yeast whole cell lysate by DD ion selection from 400-1800 m/z in triplicate and GPF(m/z) from 400-800, 800-1200 and 1200-1800 produced the following results: (i) 1.3 x more proteins were identified by GPF(m/z) for an equal amount of effort (i.e., 3 microLC/ESI-MS/MS) and (ii) proteins identified by GPF(m/z) had a lower average codon bias value. Use of GPF(RI) identified more proteins per m/z unit scanned than GPF(m/z) or triplicate analysis over a wide m/z range. After tryptic digestion of all the proteins from a discontinuous Nycodenz gradient fraction known to be enriched with yeast peroxisomal membrane proteins we detected 93% (38/41) of known peroxisomal proteins using GPF(m/z), but only 73% using a standard wide m/z range survey scan.

摘要

我们研究了在m/z维度上气相分级分离(GPF)的效用,以通过直接微液相色谱/电喷雾电离串联质谱法(microLC/ESI-MS/MS)分析来自酵母全细胞裂解物中未分级蛋白质以及来自分离的酵母过氧化物酶体的过氧化物酶体膜蛋白组分经蛋白酶解产生的肽段,从而提高蛋白质组覆盖率和肽离子选择的重现性。我们还在相对离子强度维度上研究了GPF,并建议将这两种类型的GPF分别表示为GPF(m/z)和GPF(RI)。对酵母全细胞裂解物蛋白酶解产生的未分级肽段混合物进行直接nuLC/ESI-MS/MS分析,通过在400 - 1800 m/z范围内进行三次重复的DD离子选择,以及在400 - 800、800 - 1200和1200 - 1800范围内进行GPF(m/z),比较结果如下:(i) 在相同的工作量下(即3次microLC/ESI-MS/MS分析),GPF(m/z)鉴定出的蛋白质数量多出1.3倍;(ii) GPF(m/z)鉴定出的蛋白质平均密码子偏倚值较低。在较宽的m/z范围内,使用GPF(RI)每扫描一个m/z单位鉴定出的蛋白质比GPF(m/z)或三次重复分析更多。在用胰蛋白酶消化已知富含酵母过氧化物酶体膜蛋白的不连续Nycodenz梯度级分中的所有蛋白质后,我们使用GPF(m/z)检测到93%(38/41)的已知过氧化物酶体蛋白,但使用标准宽m/z范围扫描时仅检测到73%。

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