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Expression and characterization of active site mutants of hevamine, a chitinase from the rubber tree Hevea brasiliensis

机译:来自橡胶树橡胶树的几丁质酶七胺的活性位点突变体的表达和表征

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摘要

Hevamine is a chitinase from the rubber tree Hevea brasiliensis. Its active site contains Asp125, Glu127, and Tyr183, which interact with the -1 sugar residue of the substrate. To investigate their role in catalysis, we have successfully expressed wild-type enzyme and mutants of these residues as inclusion bodies in Escherichia coli. After refolding and purification they were characterized by both structural and enzyme kinetic studies. Mutation of Tyr183 to phenylalanine produced an enzyme with a lower kcat and a slightly higher Km than the wild-type enzyme. Mutating Asp125 and Glu127 to alanine gave mutants with ≈ 2% residual activity. In contrast, the Asp125Asn mutant retained substantial activity, with an approximately twofold lower kcat and an approximately twofold higher Km than the wild-type enzyme. More interestingly, it showed activity to higher pH values than the other variants. The X-ray structure of the Asp125Ala/Glu127Ala double mutant soaked with chitotetraose shows that, compared with wild-type hevamine, the carbonyl oxygen atom of the N-acetyl group of the -1 sugar residue has rotated away from the C1 atom of that residue. The combined structural and kinetic data show that Asp125 and Tyr183 contribute to catalysis by positioning the carbonyl oxygen of the N-acetyl group near to the C1 atom. This allows the stabilization of a positively charged transient intermediate, in agreement with a previous proposal that the enzyme makes use of substrate-assisted catalysis.
机译:Hevamine是来自橡胶树巴西橡胶树的几丁质酶。它的活性位点包含Asp125,Glu127和Tyr183,它们与底物的-1糖残基相互作用。为了研究它们在催化中的作用,我们已经成功表达了野生型酶和这些残基的突变体作为大肠杆菌的包涵体。重新折叠和纯化后,通过结构和酶动力学研究对其进行表征。 Tyr183突变为苯丙氨酸产生的酶比野生型酶具有更低的kcat和略高的Km。将Asp125和Glu127突变为丙氨酸可得到具有约2%残留活性的突变体。相反,Asp125Asn突变体保留了相当大的活​​性,其kcat值比野生型酶低约两倍,而Km约高两倍。更有趣的是,它显示出比其他变体更高的pH值的活性。用壳四糖浸润的Asp125Ala / Glu127Ala双突变体的X射线结构表明,与野生型七胺相比,-1糖残基的N-乙酰基的羰基氧原子旋转远离其C1原子。残留物。组合的结构和动力学数据表明,Asp125和Tyr183通过将N-乙酰基的羰基氧置于C1原子附近而有助于催化。与先前提出的酶利用底物辅助催化的提议相一致,这可以使带正电荷的过渡中间体稳定。

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