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Combining Bottom-Up and Top-Down Mass Spectrometric Strategies for De Novo Sequencing of the Crustacean Hyperglycemic Hormone (CHH) from Cancer borealis

机译:自下而上和自上而下的质谱分析策略相结合用于从北方癌症中分离出甲壳类高血糖激素(CHH)的从头测序

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摘要

The crustacean hyperglycemic hormone (CHH) is a 72-amino acid residue polypeptide with multiple physiological effects. The X-organ/sinus gland is the primary source for CHH and its family members. However, the amino acid sequence of CHH in Cancer borealis, a premier model system for neuromodulation, has not been characterized. In this study, a novel hybrid strategy combining “bottom-up” and “top-down” methodologies enabled direct sequencing of CHH peptide in the sinus gland of C. borealis. Multiple mass spectrometry (MS)-based techniques were employed to characterize the CHH peptide, including direct tissue analysis by MALDI FT-ICR MS, de novo sequencing of tryptic digested CHH by nano-LC-ESI Q-TOF MS and intact CHH analysis by LC FT-ICR MS. In-trap cleaning removed the extensive matrix adducts of CHH in the direct tissue analysis by MALDI FT-ICR MS. Fragmentation efficiency of the intact CHH was drastically improved after the reduction-alkylation of the disulfide bonds. The sequence coverage was further enhanced by employing multiple complementary fragmentation techniques. Overall, this example is the largest neuropeptide de novo sequenced in C. borealis by mass spectrometric methods.
机译:甲壳类高血糖激素(CHH)是具有多种生理效应的72个氨基酸的残基多肽。 X器官/窦腺是CHH及其家人的主要来源。然而,尚未发现北半球巨蟹(一种神经调节的主要模型系统)中CHH的氨基酸序列。在这项研究中,一种新颖的混合策略结合了“自下而上”和“自上而下”的方法,可直接对北方念珠菌的鼻窦CHH肽进行测序。基于多重质谱(MS)的技术用于表征CHH肽,包括通过MALDI FT-ICR MS直接进行组织分析,通过纳米LC-ESI Q-TOF MS对胰蛋白酶消化的CHH进行从头测序以及通过LC FT-ICR MS。捕集阱内清洗通过MALDI FT-ICR MS在直接组织分析中去除了CHH的大量基质加合物。在二硫键的还原烷基化之后,完整的CHH的碎裂效率得到了极大的提高。通过采用多种互补片段化技术进一步增强了序列覆盖率。总的来说,该实施例是通过质谱法在北极衣原体中测序的最大的神经肽。

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