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含异锁链素的弹性蛋白肽的指纹图谱分析

Fingerprinting desmosine-containing elastin peptides.

作者信息

Schräder Christoph U, Heinz Andrea, Majovsky Petra, Schmelzer Christian E H

机构信息

Institute of Pharmacy, Faculty of Natural Sciences I, Martin Luther University Halle-Wittenberg, Halle (Saale), Germany.

出版信息

J Am Soc Mass Spectrom. 2015 May;26(5):762-73. doi: 10.1007/s13361-014-1075-9. Epub 2015 Jan 21.

Abstract

Elastin is a vital protein of the extracellular matrix of jawed vertebrates and provides elasticity to numerous tissues. It is secreted in the form of its soluble precursor tropoelastin, which is subsequently cross-linked in the course of the elastic fiber assembly. The process involves the formation of the two tetrafunctional amino acids desmosine (DES) and isodesmosine (IDES), which are unique to elastin. The resulting high degree of cross-linking confers remarkable properties, including mechanical integrity, insolubility, and long-term stability to the protein. These characteristics hinder the structural elucidation of mature elastin. However, MS(2) data of linear and cross-linked peptides released by proteolysis can provide indirect insights into the structure of elastin. In this study, we performed energy-resolved collision-induced dissociation experiments of DES, IDES, their derivatives, and DES-/IDES-containing peptides to determine characteristic product ions. It was found that all investigated compounds yielded the same product ion clusters at elevated collision energies. Elemental composition determination using the exact masses of these ions revealed molecular formulas of the type CxHyN, suggesting that the pyridinium core of DES/IDES remains intact even at relatively high collision energies. The finding of these specific product ions enabled the development of a similarity-based scoring algorithm that was successfully applied on LC-MS/MS data of bovine elastin digests for the identification of DES-/IDES-cross-linked peptides. This approach facilitates the straightforward investigation of native cross-links in elastin.

摘要

弹性蛋白是有颌脊椎动物细胞外基质中的一种重要蛋白质,为多种组织提供弹性。它以可溶性前体原弹性蛋白的形式分泌,随后在弹性纤维组装过程中发生交联。该过程涉及形成两种对弹性蛋白来说是独一无二的四官能氨基酸,即锁链素(DES)和异锁链素(IDES)。由此产生的高度交联赋予了该蛋白质显著的特性,包括机械完整性、不溶性和长期稳定性。这些特性阻碍了对成熟弹性蛋白结构的阐明。然而,通过蛋白水解释放的线性和交联肽段的串联质谱(MS(2))数据可以为弹性蛋白的结构提供间接见解。在本研究中,我们对锁链素、异锁链素、它们的衍生物以及含锁链素/异锁链素的肽段进行了能量分辨碰撞诱导解离实验,以确定特征性产物离子。结果发现,所有研究的化合物在升高的碰撞能量下都产生了相同的产物离子簇。利用这些离子的精确质量进行元素组成测定,揭示了CxHyN类型的分子式,这表明即使在相对较高的碰撞能量下,锁链素/异锁链素的吡啶鎓核心仍保持完整。这些特定产物离子的发现使得能够开发一种基于相似性的评分算法,该算法已成功应用于牛弹性蛋白消化产物的液相色谱-串联质谱(LC-MS/MS)数据,用于鉴定含锁链素/异锁链素交联的肽段。这种方法有助于直接研究弹性蛋白中的天然交联。

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