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人GM2激活蛋白的光亲和标记。对神经节苷脂GM2降解的机制性洞察。

Photoaffinity labelling of the human GM2-activator protein. Mechanistic insight into ganglioside GM2 degradation.

作者信息

Wendeler Michaela, Hoernschemeyer Joerg, Hoffmann Daniel, Kolter Thomas, Schwarzmann Guenter, Sandhoff Konrad

机构信息

Kekulé-Institut für Organische Chemie und Biochemie der Universität Bonn, D-53121 Bonn, Germany.

出版信息

Eur J Biochem. 2004 Feb;271(3):614-27. doi: 10.1111/j.1432-1033.2003.03964.x.

Abstract

The GM2-activator protein (GM2AP) is an essential cofactor for the degradation of ganglioside GM2 by lysosomal beta-hexosaminidase A. It mediates the interaction between the water-soluble exohydrolase and its membrane-bound substrate at the lipid-water interphase. Inherited defects in the gene encoding this glycoprotein result in a fatal neurological storage disorder, the AB variant of GM2-gangliosidosis. To elucidate the mode of action of this glycoprotein cofactor, we synthesized the two photoaffinity labels [14C]C3-TPD-GM2 and [14C]C7-TPD-GM2. Incubation of GM2AP with these substrate analogues and subsequent irradiation led to covalent labelling of the protein. After separation of tryptic peptides by reverse-phase HPLC, the labelled peptide fractions were analysed by MALDI-TOF and sequenced by ESI-Q-TOF mass spectrometry. Both labels were found to be specifically photoincorporated into a part of the surface loop comprising residues V153-L163, a stretch of amino acids that was previously identified as the most flexible region in the crystal structure of the activator. Our results provide strong evidence that this loop constitutes the part of the activator protein that directly interacts with the ganglioside substrate, suggesting that the hydrophobicity and the great structural mobility of this element are crucial for the extraction of the membrane-embedded glycolipid, its stabilization inside the spacious cavity and its guidance to the enzyme's active site. This study demonstrates that the approach of photoaffinity labelling in conjunction with accurate mass measurements can provide insight into substrate binding interactions that complements structural information.

摘要

GM2激活蛋白(GM2AP)是溶酶体β-己糖胺酶A降解神经节苷脂GM2所必需的辅助因子。它介导水溶性外切水解酶与其在脂质-水界面处的膜结合底物之间的相互作用。编码这种糖蛋白的基因发生遗传性缺陷会导致一种致命的神经贮积病,即GM2神经节苷脂沉积症的AB变异型。为了阐明这种糖蛋白辅助因子的作用方式,我们合成了两种光亲和标记物[14C]C3-TPD-GM2和[14C]C7-TPD-GM2。将GM2AP与这些底物类似物一起孵育,随后进行照射,导致该蛋白的共价标记。通过反相高效液相色谱法分离胰蛋白酶肽段后,用基质辅助激光解吸电离飞行时间质谱(MALDI-TOF)分析标记的肽段,并通过电喷雾四极杆飞行时间质谱(ESI-Q-TOF)进行测序。发现这两种标记物都特异性地光掺入到包含残基V153-L163的表面环的一部分中,这一段氨基酸先前被确定为激活剂晶体结构中最灵活的区域。我们的结果提供了有力证据,表明这个环构成了激活蛋白中直接与神经节苷脂底物相互作用的部分,这表明该元件的疏水性和较大的结构灵活性对于提取膜嵌入的糖脂、在宽敞腔内对其进行稳定以及将其引导至酶的活性位点至关重要。这项研究表明,光亲和标记结合精确质量测量的方法可以深入了解底物结合相互作用,从而补充结构信息。

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