Scudder P, Neville D C, Butters T D, Fleet G W, Dwek R A, Rademacher T W, Jacob G S
Department of Biochemistry, G.D. Searle & Company, University of Oxford, United Kingdom.
J Biol Chem. 1990 Sep 25;265(27):16472-7.
An alpha-fucosidase has been extracted from almond meal and purified 163,000-fold to apparent homogeneity using a novel affinity ligand, N-(5-carboxy-1-pentyl)-1,5-dideoxy-1,5-imino-L-fucitol, coupled to Affi-Gel 102. Substrate specificity studies demonstrate that the enzyme hydrolyzes the alpha-fucosidic linkages in Gal(beta 1----3)(Fuc(alpha 1----4]GlcNAc(beta 1----3)Gal(beta 1----4)Glc and Gal(beta 1----4)(Fuc(alpha 1----3]GlcNAc(beta 1----3)Gal(beta 1----4)Glc at similar rates but is unable to hydrolyze Fuc(alpha 1----2)Gal, Fuc(alpha 1----6)GlcNAc, or the synthetic substrate, p-nitrophenyl alpha-L-fucopyranoside. Hence, the enzyme closely resembles an alpha-fucosidase I isolated previously from a commercial preparation of partially purified almond beta-glucosidase (Ogata-Arakawa, M., Muramatsu, T., and Kobata, A. (1977) Arch. Biochem. Biophys. 181, 353-358). However, native and subunit relative molecular masses of 106,000 and 54,000 respectively, different charge and hydrophobicity properties, and the absence of stimulation by NaCl clearly distinguish this enzyme, designated alpha-fucosidase III, from other almond alpha-fucosidases reported previously.
已从杏仁粉中提取出一种α-岩藻糖苷酶,并使用一种新型亲和配体N-(5-羧基-1-戊基)-1,5-二脱氧-1,5-亚氨基-L-岩藻糖醇偶联到Affi-Gel 102上,将其纯化了163,000倍,达到表观均一性。底物特异性研究表明,该酶以相似的速率水解Gal(β1→3)(Fuc(α1→4]GlcNAc(β1→3)Gal(β1→4)Glc和Gal(β1→4)(Fuc(α1→3]GlcNAc(β1→3)Gal(β1→4)Glc中的α-岩藻糖苷键,但无法水解Fuc(α1→2)Gal、Fuc(α1→6)GlcNAc或合成底物对硝基苯基α-L-岩藻吡喃糖苷。因此,该酶与先前从部分纯化的杏仁β-葡萄糖苷酶商业制剂中分离出的α-岩藻糖苷酶I非常相似(绪方荒川,M.,村松,T.,和小幡,A.(1977年)《生物化学与生物物理学档案》181,353 - 358)。然而,该酶的天然和亚基相对分子质量分别为106,000和54,000,电荷和疏水性特性不同,且不受NaCl刺激,这明显将这种命名为α-岩藻糖苷酶III的酶与先前报道的其他杏仁α-岩藻糖苷酶区分开来。