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使用5-氟-β-L-古洛糖基氟化物鉴定刀豆α-甘露糖苷酶中的活性位点亲核试剂。

Identification of the active site nucleophile in jack bean alpha-mannosidase using 5-fluoro-beta-L-gulosyl fluoride.

作者信息

Howard S, He S, Withers S G

机构信息

Protein Engineering Network of Centres of Excellence of Canada, Vancouver, British Columbia, Canada.

出版信息

J Biol Chem. 1998 Jan 23;273(4):2067-72. doi: 10.1074/jbc.273.4.2067.

Abstract

Mannosidases play a key role in the processing of glycoproteins and thus are of considerable pharmaceutical interest and indeed have emerged as targets for the development of anti-cancer therapies. Access to useful quantities of the mammalian enzymes has not yet been achieved; therefore, jack bean mannosidase, a readily available enzyme, has become the model system. However, the relevance of this enzyme has not been demonstrated, nor is anything known about the active site structure of this, or any other, mannosidase. Hydrolysis by this enzyme occurs with net retention of sugar anomeric configuration; thus, a double displacement mechanism involving a mannosyl-enzyme intermediate is presumably involved. Two new mechanism-based inhibitors, 5-fluoro-alpha-D-mannosyl fluoride and 5-fluoro-beta-L-gulosyl fluoride, which function by the steady state trapping of such an intermediate, have been synthesized and tested. Both show high affinity for jack bean alpha-mannosidase (Ki' = 71 and 86 microM, respectively), and the latter has been used to label the active site nucleophile. The labeled peptide present in a peptic digest of this trapped glycosyl-enzyme intermediate was identified by neutral loss scans on an electrospray ionization triple quadrupole mass spectrometer. Comparative liquid chromatographic/mass spectrometric analysis of peptic digests of labeled and unlabeled enzyme samples confirmed the unique presence of this peptide of m/z 1180.5 in the labeled sample. The label was cleaved from the peptide by treatment with ammonia, and the resultant unlabeled peptide was purified and sequenced by Edman degradation. The peptide identified contained only one candidate for the catalytic nucleophile, an aspartic acid. This residue was contained within the sequence Gly-Trp-Gln-Ile-Asp-Pro-Phe-Gly-His-Ser, which showed excellent sequence similarity with regions in mammalian lysosomal and Golgi alpha-mannosidase sequences. These mammalian alpha-mannosidases belong to family 38 (or class II alpha-mannosidases) in which the Asp in the above sequence is totally conserved. This finding therefore assigns jack bean alpha-mannosidase to family 38, validating it as a model for other pharmaceutically interesting enzymes and thereby identifying the catalytic nucleophile within this family.

摘要

甘露糖苷酶在糖蛋白加工过程中起关键作用,因此具有相当大的药学研究价值,并且已成为抗癌治疗药物开发的靶点。目前尚未获得足够量的哺乳动物酶;因此,刀豆甘露糖苷酶这种易于获取的酶已成为模型系统。然而,这种酶的相关性尚未得到证实,而且对于该酶或任何其他甘露糖苷酶的活性位点结构也一无所知。该酶水解时糖异头构型净保留;因此,推测涉及甘露糖基 - 酶中间体的双取代机制。已合成并测试了两种基于机制的新型抑制剂,5 - 氟 - α - D - 甘露糖基氟化物和5 - 氟 - β - L - 古洛糖基氟化物,它们通过稳态捕获这种中间体发挥作用。两者对刀豆α - 甘露糖苷酶均显示出高亲和力(Ki'分别为71和86 μM),后者已用于标记活性位点亲核试剂。通过电喷雾电离三重四极杆质谱仪上的中性丢失扫描鉴定了存在于这种捕获的糖基 - 酶中间体的胃蛋白酶消化物中的标记肽段。对标记和未标记酶样品的胃蛋白酶消化物进行的比较液相色谱/质谱分析证实了在标记样品中独特存在的m/z 1180.5的这种肽段。通过用氨处理从肽段上裂解下标记物,所得未标记肽段经纯化后通过埃德曼降解法测序。鉴定出的肽段仅含有一个催化亲核试剂候选物,即天冬氨酸。该残基包含在序列Gly - Trp - Gln - Ile - Asp - Pro - Phe - Gly - His - Ser中,该序列与哺乳动物溶酶体和高尔基体α - 甘露糖苷酶序列中的区域具有极好的序列相似性。这些哺乳动物α - 甘露糖苷酶属于38家族(或II类α - 甘露糖苷酶),上述序列中的天冬氨酸在该家族中完全保守。因此,这一发现将刀豆α - 甘露糖苷酶归为38家族,验证了它作为其他具有药学研究价值的酶的模型,从而确定了该家族中的催化亲核试剂。

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