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通过质谱法测量的肽段中部分同位素掺入的计算。

Calculation of partial isotope incorporation into peptides measured by mass spectrometry.

作者信息

Fetzer Ingo, Jehmlich Nico, Vogt Carsten, Richnow Hans-Hermann, Seifert Jana, Harms Hauke, von Bergen Martin, Schmidt Frank

机构信息

Helmholtz Centre for Environmental Research - UFZ, Department of Environmental Microbiology, Permoserstrasse 15, D-04318 Leipzig, Germany.

出版信息

BMC Res Notes. 2010 Jun 24;3:178. doi: 10.1186/1756-0500-3-178.

Abstract

BACKGROUND

Stable isotope probing (SIP) technique was developed to link function, structure and activity of microbial cultures metabolizing carbon and nitrogen containing substrates to synthesize their biomass. Currently, available methods are restricted solely to the estimation of fully saturated heavy stable isotope incorporation and convenient methods with sufficient accuracy are still missing. However in order to track carbon fluxes in microbial communities new methods are required that allow the calculation of partial incorporation into biomolecules.

RESULTS

In this study, we use the characteristics of the so-called 'half decimal place rule' (HDPR) in order to accurately calculate the partial13C incorporation in peptides from enzymatic digested proteins. Due to the clade-crossing universality of proteins within bacteria, any available high-resolution mass spectrometry generated dataset consisting of tryptically-digested peptides can be used as reference.We used a freely available peptide mass dataset from Mycobacterium tuberculosis consisting of 315,579 entries. From this the error of estimated versus known heavy stable isotope incorporation from an increasing number of randomly drawn peptide sub-samples (100 times each; no repetition) was calculated. To acquire an estimated incorporation error of less than 5 atom %, about 100 peptide masses were needed. Finally, for testing the general applicability of our method, peptide masses of tryptically digested proteins from Pseudomonas putida ML2 grown on labeled substrate of various known concentrations were used and13C isotopic incorporation was successfully predicted. An easy-to-use script 1 was further developed to guide users through the calculation procedure for their own data series.

CONCLUSION

Our method is valuable for estimating13C incorporation into peptides/proteins accurately and with high sensitivity. Generally, our method holds promise for wider applications in qualitative and especially quantitative proteomics.

摘要

背景

稳定同位素探测(SIP)技术的开发旨在将代谢含碳和氮底物以合成生物量的微生物培养物的功能、结构和活性联系起来。目前,可用方法仅局限于对完全饱和的重稳定同位素掺入的估计,仍然缺少具有足够准确性的便捷方法。然而,为了追踪微生物群落中的碳通量,需要新的方法来计算生物分子中的部分掺入情况。

结果

在本研究中,我们利用所谓的“半小数位规则”(HDPR)的特性,准确计算酶解蛋白质中肽段的部分13C掺入情况。由于细菌内蛋白质的进化分支交叉普遍性,任何由胰蛋白酶消化肽段组成的可用高分辨率质谱生成数据集都可作为参考。我们使用了来自结核分枝杆菌的一个免费肽质量数据集,其中包含315,579个条目。据此计算了从越来越多随机抽取的肽子样本(每个样本抽取100次;无重复)中估计的与已知重稳定同位素掺入之间的误差。为了获得小于5原子%的估计掺入误差,大约需要100个肽质量。最后,为了测试我们方法的普遍适用性,使用了在各种已知浓度的标记底物上生长的恶臭假单胞菌ML2经胰蛋白酶消化的蛋白质的肽质量,并成功预测了13C同位素掺入情况。还进一步开发了一个易于使用的脚本1,以指导用户针对自己的数据系列进行计算过程。

结论

我们的方法对于准确且高灵敏度地估计13C掺入肽/蛋白质中具有重要价值。总体而言,我们的方法有望在定性尤其是定量蛋白质组学中得到更广泛的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3858/2913921/e83c756b98ab/1756-0500-3-178-1.jpg

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