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嗜热栖热放线菌Cel9A活性位点突变酶的动力学研究。

Kinetic studies of Thermobifida fusca Cel9A active site mutant enzymes.

作者信息

Zhou Weilin, Irwin Diana C, Escovar-Kousen Jose, Wilson David B

机构信息

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

出版信息

Biochemistry. 2004 Aug 3;43(30):9655-63. doi: 10.1021/bi049394n.

Abstract

Thermobifida fusca Cel9A-90, an unusual family 9 enzyme, is a processive endoglucanase containing a catalytic domain closely linked to a family 3c cellulose binding domain (Cel9A-68) followed by a fibronectin III-like domain and a family 2 cellulose binding domain. To study its catalytic mechanism, 12 mutant genes with changes in five conserved residues of Cel9A-68 were constructed, cloned, and expressed in Escherichia coli. The purified mutant enzymes were assayed for their activities on (carboxymethyl)cellulose, phosphoric acid-swollen cellulose, bacterial microcrystalline cellulose, and 2,4-dinitrophenyl beta-D-cellobioside. They were also tested for ligand binding, enzyme processivity, and thermostability. The results clearly show that E424 functions as the catalytic acid, D55 and D58 are both required for catalytic base activity, and Y206 plays an important role in binding, catalysis, and processivity, while Y318 plays an important role in binding of crystalline cellulose substrates and is required for processivity. Several amino acids located in a loop at the end of the catalytic cleft (T245-L251) were deleted from Cel9A-68, and this enzyme showed slightly improved filter paper activity and binding to BMCC but otherwise behaved like the wild-type enzyme. The FnIII-like domain was deleted from Cel9A-90, reducing BMCC activity to 43% of the wild type.

摘要

嗜热栖热放线菌Cel9A-90是一种不同寻常的9家族酶,是一种持续作用的内切葡聚糖酶,其催化结构域与3c家族纤维素结合结构域(Cel9A-68)紧密相连,随后是纤连蛋白III样结构域和2家族纤维素结合结构域。为了研究其催化机制,构建、克隆了12个在Cel9A-68的5个保守残基上有变化的突变基因,并在大肠杆菌中进行表达。对纯化的突变酶进行了对(羧甲基)纤维素、磷酸膨胀纤维素、细菌微晶纤维素和2,4-二硝基苯基-β-D-纤维二糖的活性测定。还对它们进行了配体结合、酶持续作用和热稳定性测试。结果清楚地表明,E424作为催化酸起作用,D55和D58对催化碱活性都是必需的,Y206在结合、催化和持续作用中起重要作用,而Y318在结晶纤维素底物的结合中起重要作用,并且是持续作用所必需的。从Cel9A-68中删除了位于催化裂隙末端一个环中的几个氨基酸(T245-L251),该酶的滤纸活性略有提高,与细菌微晶纤维素的结合能力增强,但在其他方面表现得与野生型酶相似。从Cel9A-90中删除了FnIII样结构域,使细菌微晶纤维素活性降至野生型的43%。

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