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Characterization of honeybee venom by MALDI-TOF and nanoESI-QqTOF mass spectrometry.

机译:MALDI-TOF和nanoESI-QqTOF质谱表征蜜蜂毒液。

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摘要

The aim of the study was to comprehensively characterize different honeybee venom samples applying two complementary mass spectrometry methods. 41 honeybee venom samples of different bee strains, country of origin (Poland, Georgia, and Estonia), year and season of the venom collection were analyzed using MALDI-TOF and nanoESI-QqTOF-MS. It was possible to obtain semi-quantitative data for 12 different components in selected honeybee venom samples using MALDI-TOF method without further sophisticated and time consuming sample pretreatment. Statistical analysis (ANOVA) has shown that there are qualitative and quantitative differences in the composition between honeybee venom samples collected over different years. It has also been demonstrated that MALDI-TOF spectra can be used as a "protein fingerprint" of honeybee venom in order to confirm the identity of the product. NanoESI-QqTOF-MS was applied especially for identification purposes. Using this technique 16 peptide sequences were identified, including melittin (12 different breakdown products and precursors), apamine, mast cell degranulating peptide and secapin. Moreover, the significant achievement of this study is the fact that the new peptide (HTGAVLAGV+Amidated (C-term), M(r)=822.53Da) has been discovered in bee venom for the first time.
机译:该研究的目的是使用两种互补的质谱方法全面表征不同的蜜蜂毒液样品。使用MALDI-TOF和nanoESI-QqTOF-MS分析了41种不同蜂株的蜜蜂毒液样品,原产国(波兰,乔治亚州和爱沙尼亚),毒液收集的年份和季节。使用MALDI-TOF方法可以获得选定蜜蜂毒液样品中12种不同成分的半定量数据,而无需进行进一步的复杂且费时的样品预处理。统计分析(ANOVA)表明,不同年份收集的蜜蜂毒液样品之间在成分上存在定性和定量差异。还已证明,MALDI-TOF光谱可用作蜜蜂毒液的“蛋白质指纹”,以确认产品的身份。 NanoESI-QqTOF-MS尤其用于鉴定目的。使用该技术,鉴定了16种肽序列,包括蜂毒肽(12种不同的分解产物和前体),阿帕明,肥大细胞脱粒肽和secapin。此外,这项研究的重大成就是这样的事实,即首次在蜂毒中发现了新肽(HTGAVLAGV +酰胺化(C末端),M(r)= 822.53Da)。

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