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Purification and High-Resolution Top-Down Mass Spectrometric Characterization of Human Salivary alpha-Amylase

机译:唾液α-淀粉酶的纯化和高分辨率自上而下的质谱表征

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摘要

Human salivary alpha-amylase (HSAMY) is a major component of salivary secretions, possessing multiple important biological functions. Here we have established three methods to purify HSAMY in human saliva for comprehensive characterization of HSAMY by high-resolution top-down mass spectrometry (MS). Among the three purification methods, the affinity method based on the enzyme-substrate specific interaction between amylase and glycogen is preferred, providing the highest purity HSAMY with high reproducibility. Subsequently, we employed Fourier transform ion cyclotron resonance MS to analyze the purified HSAMY. The predominant form of alpha-amylase purified from saliva of various races and genders is nonglycosylated with the same molecular weight of 55 881.2, which is 1885.8 lower than the calculated value based on the DNA-predicted sequence. High-resolution MS revealed the truncation of the first 15 N-terminal amino acids (-1858.96) and the subsequent formation of pyroglutamic acid at the new N-terminus Gln (-17.03). More importantly, five disulfide bonds in HSAMY were identified (-10.08) and effectively localized by tandem MS in conjunction with complete and partial reduction by tris (2-carboxyethyl) phosphine. Overall, this study demonstrates that top-down MS combined with affinity purification and partial reduction is a powerful method for rapid purification and complete characterization of large proteins with complex and overlapping disulfide bond patterns.
机译:人唾液α-淀粉酶(HSAMY)是唾液分泌物的主要成分,具有多种重要的生物学功能。在这里,我们建立了三种纯化人类唾液中HSAMY的方法,用于通过高分辨率自上而下的质谱(MS)全面表征HSAMY。在这三种纯化方法中,优选基于淀粉酶和糖原之间酶-底物特异性相互作用的亲和方法,以提供具有最高可重复性的最高纯度的HSAMY。随后,我们使用傅立叶变换离子回旋共振MS来分析纯化的HSAMY。从各种种族和性别的唾液中纯化的α-淀粉酶的主要形式均未糖基化,分子量相同,为55 881.2,比基于DNA预测序列的计算值低1885.8。高分辨率质谱揭示了前15个N末端氨基酸(-1858.96)的截短以及随后在新的N末端Gln(-17.03)上形成焦谷氨酸的过程。更重要的是,鉴定了HSAMY中的五个二硫键(-10.08),并通过串联MS结合三(2-羧乙基)膦的完全和部分还原作用有效地定位了它们。总的来说,这项研究表明,自上而下的MS与亲和纯化和部分还原相结合是一种强大的方法,可以快速纯化和完全表征具有复杂和重叠二硫键模式的大蛋白。

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