首页> 美国卫生研究院文献>Biochemical Journal >Aromatic residues within the substrate-binding cleft of Bacillus circulans chitinase A1 are essential for hydrolysis of crystalline chitin.
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Aromatic residues within the substrate-binding cleft of Bacillus circulans chitinase A1 are essential for hydrolysis of crystalline chitin.

机译:环状芽孢杆菌几丁质酶A1的底物结合裂隙中的芳香残基对于结晶几丁质的水解至关重要。

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摘要

Bacillus circulans chitinase A1 (ChiA1) has a deep substrate-binding cleft on top of its (beta/alpha)8-barrel catalytic domain and an interaction between the aromatic residues in this cleft and bound oligosaccharide has been suggested. To study the roles of these aromatic residues, especially in crystalline-chitin hydrolysis, site-directed mutagenesis of these residues was carried out. Y56A and W53A mutations at subsites -5 and -3, respectively, selectively decreased the hydrolysing activity against highly crystalline beta-chitin. W164A and W285A mutations at subsites +1 and +2, respectively, decreased the hydrolysing activity against crystalline beta-chitin and colloidal chitin, but enhanced the activities against soluble substrates. These mutations increased the K(m)-value when reduced (GlcNAc)5 (where GlcNAc is N -acetylglucosamine) was used as the substrate, but decreased substrate inhibition observed with wild-type ChiA1 at higher concentrations of this substrate. In contrast with the selective effect of the other mutations, mutations of W433 and Y279 at subsite -1 decreased the hydrolysing activity drastically against all substrates and reduced the kcat-value, measured with 4-methylumbelliferyl chitotrioside to 0.022% and 0.59% respectively. From these observations, it was concluded that residues Y56 and W53 are only essential for crystalline-chitin hydrolysis. W164 and W285 are very important for crystalline-chitin hydrolysis and also participate in hydrolysis of other substrates. W433 and Y279 are both essential for catalytic reaction as predicted from the structure.
机译:环状芽孢杆菌几丁质酶A1(ChiA1)在其β/α8-桶催化结构域的顶部具有深的底物结合裂缝,并且已提出该裂缝中的芳香族残基与结合的寡糖之间存在相互作用。为了研究这些芳族残基的作用,特别是在结晶-几丁质水解中的作用,对这些残基进行了定点诱变。分别在亚位点-5和-3处的Y56A和W53A突变选择性降低了针对高度结晶的β-甲壳质的水解活性。在亚位点+1和+2处的W164A和W285A突变分别降低了对结晶β-甲壳质和胶体甲壳质的水解活性,但增强了对可溶性底物的水解活性。当使用还原的(GlcNAc)5(其中GlcNAc是N-乙酰氨基葡糖)作为底物时,这些突变会增加K(m)值,但是在较高浓度的底物上用野生型ChiA1观察到的底物抑制作用会降低。与其他突变的选择性作用相反,亚位点-1处的W433和Y279突变大大降低了对所有底物的水解活性,并降低了kcat值(用4-甲基伞形甲壳素三糖苷测得的kcat值分别降至0.022%和0.59%)。从这些观察结果可以得出结论,残基Y56和W53仅对于结晶-几丁质水解是必需的。 W164和W285对于结晶-几丁质水解非常重要,并且还参与其他底物的水解。根据结构预测,W433和Y279都是催化反应必不可少的。

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