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N370S 突变型人酸性β-葡萄糖苷酶的 X 射线和生化分析。

X-ray and biochemical analysis of N370S mutant human acid β-glucosidase.

机构信息

Genzyme Corp., Framingham, Massachusetts 01701, USA.

出版信息

J Biol Chem. 2011 Jan 7;286(1):299-308. doi: 10.1074/jbc.M110.150433. Epub 2010 Oct 27.

Abstract

Gaucher disease is caused by mutations in the enzyme acid β-glucosidase (GCase), the most common of which is the substitution of serine for asparagine at residue 370 (N370S). To characterize the nature of this mutation, we expressed human N370S GCase in insect cells and compared the x-ray structure and biochemical properties of the purified protein with that of the recombinant human GCase (imiglucerase, Cerezyme®). The x-ray structure of N370S mutant acid β-glucosidase at acidic and neutral pH values indicates that the overall folding of the N370S mutant is identical to that of recombinant GCase. Subtle differences were observed in the conformation of a flexible loop at the active site and in the hydrogen bonding ability of aromatic residues on this loop with residue 370 and the catalytic residues Glu-235 and Glu-340. Circular dichroism spectroscopy showed a pH-dependent change in the environment of tryptophan residues in imiglucerase that is absent in N370S GCase. The mutant protein was catalytically deficient with reduced V(max) and increased K(m) values for the substrate p-nitrophenyl-β-D-glucopyranoside and reduced sensitivity to competitive inhibitors. N370S GCase was more stable to thermal denaturation and had an increased lysosomal half-life compared with imiglucerase following uptake into macrophages. The competitive inhibitor N-(n-nonyl)deoxynojirimycin increased lysosomal levels of both N370S and imiglucerase 2-3-fold by reducing lysosomal degradation. Overall, these data indicate that the N370S mutation results in a normally folded but less flexible protein with reduced catalytic activity compared with imiglucerase.

摘要

戈谢病是由酸性β-葡萄糖苷酶(GCase)酶的突变引起的,其中最常见的是丝氨酸取代 370 号残基上的天门冬酰胺(N370S)。为了表征该突变的性质,我们在昆虫细胞中表达了人 N370S GCase,并比较了纯化蛋白的 X 射线结构和生化特性与重组人 GCase(伊米苷酶,Cerezyme®)。在酸性和中性 pH 值下,N370S 突变酸性β-葡萄糖苷酶的 X 射线结构表明,N370S 突变体的整体折叠与重组 GCase 相同。在活性部位的柔性环的构象以及该环上芳香族残基与 370 号残基和催化残基 Glu-235 和 Glu-340 的氢键能力方面观察到细微差异。圆二色性光谱显示伊米苷酶中色氨酸残基的环境随 pH 变化,而 N370S GCase 则没有。该突变蛋白的催化活性不足,其对底物 p-硝基苯-β-D-葡萄糖苷的 Vmax 和 K m 值降低,对竞争性抑制剂的敏感性降低。与伊米苷酶相比,N370S GCase 在进入巨噬细胞后对热变性更稳定,溶酶体半衰期更长。竞争性抑制剂 N-(正壬基)去氧野尻霉素通过减少溶酶体降解,使 N370S 和伊米苷酶的溶酶体水平增加 2-3 倍。总体而言,这些数据表明,与伊米苷酶相比,N370S 突变导致正常折叠但柔韧性降低的蛋白质,其催化活性降低。

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