首页> 外文期刊>Archives of Biochemistry and Biophysics >Trp-49 of the family 3 beta-glucosidase from Aspergillus niger is important for its transglucosidic activity: creation of novel beta-glucosidases with low transglucosidic efficiencies.
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Trp-49 of the family 3 beta-glucosidase from Aspergillus niger is important for its transglucosidic activity: creation of novel beta-glucosidases with low transglucosidic efficiencies.

机译:来自黑曲霉的3族β-葡萄糖苷酶的Trp-49对其转糖苷活性很重要:产生具有低转糖苷效率的新型β-葡萄糖苷酶。

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摘要

Family 3 beta-glucosidases from Aspergillus niger with substitutions for Trp-49 result in the accumulation of very small amounts of transglucosidic adducts, compared to the large amounts that accumulate with wild type enzyme. On the other hand, the amounts of the hydrolytic products that form is decreased by only small amounts. Kinetic studies showed that the main reason for the decreased accumulation of transglucosidic intermediates is a large decrease in binding capacity for Glc at site +1 and an increase in binding ability at site-1. The hydrolytic catalytic constants (kcat(h)) of the substituted enzymes were 3 to 4-fold smaller than those of wild type enzymes, while the Km(h) values were less than 2-fold smaller. The catalytic constants of the transglucosidic reactions (kcat(t) values) were essentially unchanged, but the Km(t) values of the substituted enzymes were about 25-fold larger than those of wild type enzymes. These changes mean that the efficiencies of hydrolytic reactions (kcat(h)/Km(h)) of beta-glucosidases created through substitutions for Trp-49 are less than 2-fold smaller than those of wild type beta-glucosidase, but the efficiencies of the transglucosidic reactions (kcat(t)/Km(t)) of the substituted enzymes are 25 to 30-fold smaller. This results in a significantly decreased formation of transglucosidic intermediates. In addition, the high hydrolytic efficiencies of the substituted enzymes, cause even the very small amounts of transglucosidic intermediates that form to be rapidly hydrolyzed. The overall effect is a very small accumulation of intermediates.
机译:与野生型酶积累的大量糖相比,黑曲霉的家族3β-葡萄糖苷酶替代了Trp-49,导致积累了非常少量的转糖苷加合物。另一方面,形成的水解产物的量仅少量减少。动力学研究表明,转糖苷中间体的积累减少的主要原因是在位点+1处对Glc的结合能力大大降低,而在位点1处结合能力增加了。取代的酶的水解催化常数(kcat(h))比野生型酶的水解催化常数小3至4倍,而Km(h)值小2倍。转糖苷反应的催化常数(kcat(t)值)基本不变,但取代酶的Km(t)值比野生型酶大25倍。这些变化意味着通过取代Trp-49产生的β-葡萄糖苷酶的水解反应(kcat(h)/ Km(h))的效率比野生型β-葡萄糖苷酶的水解效率低2倍以上,但是效率取代的酶的转糖苷反应的量(kcat(t)/ Km(t))小25至30倍。这导致转糖苷中间体的形成显着减少。另外,取代酶的高水解效率甚至导致形成的非常少量的反式糖苷中间体也被迅速水解。总体效果是非常少量的中间体积累。

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