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非催化残基突变对嗜热栖热放线菌内切葡聚糖酶cel6A底物特异性和配体结合的影响。

Effects of noncatalytic residue mutations on substrate specificity and ligand binding of Thermobifida fusca endocellulase cel6A.

作者信息

Zhang S, Barr B K, Wilson D B

机构信息

Department of Molecular Biology and Genetics, Cornell University, Itha ca, New York 14853, USA.

出版信息

Eur J Biochem. 2000 Jan;267(1):244-52. doi: 10.1046/j.1432-1327.2000.00988.x.

Abstract

The availability of a high-resolution structure of the Thermobifida fusca endocellulase Cel6A catalytic domain makes this enzyme ideal for structure-based efforts to engineer cellulases with high activity on native cellulose. In order to determine the role of conserved, noncatalytic residues in cellulose hydrolysis, 14 mutations of six conserved residues in or near the Cel6A active-site cleft were studied for their effects on catalytic activity, substrate specificity, processivity and ligand-binding affinity. Eleven mutations were generated by site-directed mutagenesis using PCR, while three were from previous studies. All the CD spectra of the mutant enzymes were indistinguishable from that of Cel6A indicating that the mutations did not dramatically change protein conformation. Seven mutations in four residues (H159, R237, K259 and E263) increased activity on carboxymethyl cellulose (CM-cellulose), with K259H (in glucosyl subsite -2) creating the highest activity (370%). Interestingly, the other mutations in these residues reduced CM-cellulose activity. Only the K259H enzyme retained more activity on acid-swollen cellulose than on filter paper, suggesting that this mutation affected the rate-limiting step in crystalline cellulose hydrolysis. All the mutations lowered activity on cellotriose and cellotetraose, but two mutations, both in subsite +1 (H159S and N190A), had higher kcat/Km values (6.6-fold and 5.0-fold, respectively) than Cel6A on 2,4-dinitrophenyl-beta-D-cellobioside. Measurement of enzyme : ligand dissociation constants for three methylumbelliferyl oligosaccharides and cellotriose showed that all mutant enzymes bound these ligands either to the same extent as or more weakly than Cel6A. These results show that conserved noncatalytic residues can profoundly affect Cel6A activity and specificity.

摘要

嗜热栖热放线菌内切葡聚糖酶Cel6A催化结构域的高分辨率结构,使得该酶成为基于结构设计对天然纤维素具有高活性的纤维素酶的理想选择。为了确定保守的非催化残基在纤维素水解中的作用,研究了Cel6A活性位点裂隙内或附近六个保守残基的14个突变对催化活性、底物特异性、持续合成能力和配体结合亲和力的影响。11个突变通过使用PCR的定点诱变产生,而另外3个来自先前的研究。突变酶的所有圆二色光谱与Cel6A的光谱无法区分,表明这些突变没有显著改变蛋白质构象。四个残基(H159、R237、K259和E263)中的七个突变增加了对羧甲基纤维素(CM-纤维素)的活性,其中K259H(在葡萄糖基亚位点-2)产生了最高活性(370%)。有趣的是,这些残基中的其他突变降低了CM-纤维素活性。只有K259H酶在酸膨胀纤维素上保留的活性比在滤纸上更多,这表明该突变影响了结晶纤维素水解中的限速步骤。所有突变都降低了对纤维三糖和纤维四糖的活性,但亚位点+1中的两个突变(H159S和N190A)在2,4-二硝基苯基-β-D-纤维二糖苷上的kcat/Km值(分别为6.6倍和5.0倍)高于Cel6A。对三种甲基伞形基寡糖和纤维三糖的酶:配体解离常数的测量表明,所有突变酶与这些配体的结合程度与Cel6A相同或比Cel6A更弱。这些结果表明,保守的非催化残基可深刻影响Cel6A的活性和特异性。

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