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通过电子捕获解离傅里叶变换离子回旋共振质谱法测定IgA1铰链区异常O-糖基化

Determination of aberrant O-glycosylation in the IgA1 hinge region by electron capture dissociation fourier transform-ion cyclotron resonance mass spectrometry.

作者信息

Renfrow Matthew B, Cooper Helen J, Tomana Milan, Kulhavy Rose, Hiki Yoshiyuki, Toma Kazunori, Emmett Mark R, Mestecky Jiri, Marshall Alan G, Novak Jan

机构信息

National High Magnetic Field Laboratory, Florida State University, Tallahassee, Florida 32310-4005, USA.

出版信息

J Biol Chem. 2005 May 13;280(19):19136-45. doi: 10.1074/jbc.M411368200. Epub 2005 Feb 22.

Abstract

In a number of human diseases of chronic inflammatory or autoimmune character, immunoglobulin molecules display aberrant glycosylation patterns of N- or O-linked glycans. In IgA nephropathy, IgA1 molecules with incompletely galactosylated O-linked glycans in the hinge region (HR) are present in mesangial immunodeposits and in circulating immune complexes. It is not known whether the Gal deficiency in IgA1 proteins occurs randomly or preferentially at specific sites. To develop experimental approaches to address this question, the synthetic IgA1 hinge region and hinge region from a naturally Gal-deficient IgA1 myeloma protein have been analyzed by 9.4 tesla Fourier transform-ion cyclotron resonance mass spectrometry. Fourier transform-ion cyclotron resonance mass spectrometry offers two complementary fragmentation techniques for analysis of protein glycosylation by tandem mass spectrometry. Infrared multiphoton dissociation of isolated myeloma IgA1 hinge region peptides confirms the amino acid sequence of the de-glycosylated peptide and positively identifies a series of fragments differing in O-glycosylation. To localize sites of O-glycan attachment, synthetic IgA1 HR glycopeptides and HR from a naturally Gal-deficient polymeric IgA1 myeloma protein were analyzed by electron capture dissociation and activated ion-electron capture dissociation. Multiple sites of O-glycan attachment (including sites of Gal deficiency) in myeloma IgA1 HR glycoforms were identified (in all but one case uniquely). These results represent the first direct identification of multiple sites of O-glycan attachment in IgA1 hinge region by mass spectrometry, thereby enabling future characterization at the molecular level of aberrant glycosylation of IgA1 in diseases such as IgA nephropathy.

摘要

在许多具有慢性炎症或自身免疫特征的人类疾病中,免疫球蛋白分子的N-或O-连接聚糖呈现异常的糖基化模式。在IgA肾病中,系膜免疫沉积物和循环免疫复合物中存在铰链区(HR)O-连接聚糖半乳糖化不完全的IgA1分子。目前尚不清楚IgA1蛋白中的半乳糖缺乏是随机发生还是优先发生在特定位点。为了开发实验方法来解决这个问题,我们通过9.4特斯拉傅里叶变换离子回旋共振质谱对合成的IgA1铰链区和来自天然半乳糖缺乏的IgA1骨髓瘤蛋白的铰链区进行了分析。傅里叶变换离子回旋共振质谱提供了两种互补的碎裂技术,用于通过串联质谱分析蛋白质糖基化。分离的骨髓瘤IgA1铰链区肽段的红外多光子解离证实了去糖基化肽段的氨基酸序列,并明确鉴定了一系列O-糖基化不同的片段。为了定位O-聚糖连接位点,我们通过电子捕获解离和活化离子-电子捕获解离对合成的IgA1 HR糖肽和来自天然半乳糖缺乏的聚合IgA1骨髓瘤蛋白的HR进行了分析。鉴定了骨髓瘤IgA1 HR糖型中多个O-聚糖连接位点(除一例外均唯一)。这些结果代表了首次通过质谱直接鉴定IgA1铰链区中多个O-聚糖连接位点,从而能够在分子水平上进一步表征IgA肾病等疾病中IgA1异常糖基化的特征。

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