Yáñez E, Carmona T A, Tiemblo M, Jiménez A, Fernández-Lobato M
Centro de Biologia Molecular 'Severo Ochoa' (CSIC-UAM), Universidad Autónoma, Cantoblanco, 28049 Madrid, Spain.
Biochem J. 1998 Jan 1;329 ( Pt 1)(Pt 1):65-71. doi: 10.1042/bj3290065.
The role of N-linked glycosylation on the biological activity of Schwanniomyces occidentalis SWA2 alpha-amylase, as expressed in Saccharomyces cerevisiae, was analysed by site-directed mutagenesis of the two potential N-glycosylation sites, Asn-134 and Asn-229. These residues were replaced by Ala or Gly individually or in various combinations and the effects on the activity, secretion and thermal stability of the enzyme were studied. Any Asn-229 substitution caused a drastic decrease in activity levels of the extracellular enzyme. In contrast, substitutions of Asn-134 had little or no effect. The use of antibodies showed that alpha-amylase was secreted in all the mutants tested, although those containing substitutions at Asn-229 seemed to have a lower rate of synthesis and/or higher degradation than the wild-type strain. alpha-Amylases with substitution at Asn-229 had a 2 kDa lower molecular mass than the wild-type protein, as did the wild-type protein itself after treatment with endoglycosidase F. These findings indicate that Asn-229 is the single glycosylated residue in SWA2. Thermostability analysis of both purified wild-type (T50=50 degrees C, where T50 is the temperature resulting in 50% loss of activity) and mutant enzymes indicated that removal of carbohydrate from the 229 position results in a decrease of approx. 3 degrees C in the T50 of the enzyme. The Gly-229 mutation does not change the apparent affinity of the enzyme for starch (Km) but decreases to 1/22 its apparent catalytic efficiency (kcat/Km). These results therefore indicate that glycosylation at the 229 position has an important role in the extracellular activity levels, kinetics and stability of the Sw. occidentalis SWA2 alpha-amylase in both its wild-type and mutant forms.
通过对两个潜在的N-糖基化位点Asn-134和Asn-229进行定点诱变,分析了在酿酒酵母中表达的西方施万酵母SWA2α-淀粉酶的N-糖基化对其生物学活性的作用。将这些残基分别或组合替换为丙氨酸或甘氨酸,并研究了对该酶活性、分泌和热稳定性的影响。任何Asn-229的替换都会导致细胞外酶活性水平急剧下降。相比之下,Asn-134的替换几乎没有影响或没有影响。抗体的使用表明,在所有测试的突变体中α-淀粉酶都能分泌,尽管那些在Asn-229处有替换的突变体似乎比野生型菌株的合成速率更低和/或降解更高。在Asn-229处有替换的α-淀粉酶的分子量比野生型蛋白低2 kDa,用内切糖苷酶F处理后的野生型蛋白也是如此。这些发现表明Asn-229是SWA2中唯一的糖基化残基。对纯化的野生型(T50 = 50℃,其中T50是导致50%活性丧失的温度)和突变体酶的热稳定性分析表明,从229位去除碳水化合物会导致该酶的T50降低约3℃。Gly-229突变不会改变该酶对淀粉的表观亲和力(Km),但会使其表观催化效率(kcat/Km)降至1/22。因此,这些结果表明,229位的糖基化在野生型和突变型西方施万酵母SWA2α-淀粉酶的细胞外活性水平、动力学和稳定性中具有重要作用。