粘质沙雷氏菌几丁质酶B两种表面暴露的酪氨酸残基Y240和Y481在晶体几丁质降解过程中的作用差异

H. Sugimoto, K.T. Nakamura, Yuji Nishino, Yuta Idezawa, A. Fujinuma, Kazushi Suzuki, Takeshi Watanabe
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引用次数: 2

摘要

来自粘质沙雷氏菌2170的几丁质酶B是一种加工性几丁质酶,其表面和催化裂口上都有芳香氨基酸残基的线性路径。有四个面向裂缝的表面暴露残留物,Y481, W479, W252和Y240。用丙氨酸取代这些残基会导致底物结合程度和水解活性的降低(Katouno et al., 2004)。在这里,我们研究了三个不失去底物结合能力的突变体,Y240W, Y481W和Y240W/Y481W。制备这些突变体是为了详细分析Y240和Y481的功能,它们对底物结合的贡献低于W479和W252。这三个突变体与结晶β-几丁质结合的参数与野生型相似。Y240W和Y240W/Y481W对结晶β-几丁质的水解活性显著降低。然而,Y481W的水解活性与野生型相似,表明Y240和Y481在晶体β-几丁质降解过程中所起的作用有所不同。综合之前的结果,我们认为虽然Y240和Y481是底物结合所必需的,但Y240在晶体β-几丁质的降解过程中有额外的作用,可能是引导几丁质链进入催化裂口。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Differences in the roles of the two surface-exposed tyrosine residues, Y240 and Y481, of Serratia marcescens chitinase B during processive degradation of crystalline chitin.
Chitinase B from Serratia marcescens 2170 is one of the processive chitinases, and it has a linear path of aromatic amino acid residues on the surface and in the catalytic cleft. There are four surface-exposed residues lined-up towards the cleft, Y481, W479, W252, and Y240. The substitution of these residues with alanine causes a decrease in both the extent of the substrate binding and the hydrolytic activity (Katouno et al., 2004). Here, we examine the three mutants without losing the substrate-binding ability, Y240W, Y481W, and Y240W/Y481W. These mutants were prepared for a detailed analysis of the functions of Y240 and Y481, which showed a lower contribution to substrate binding than W479 and W252. The parameters for the binding of the three mutants to crystalline β-chitin were similar to those for the wild type. The hydrolytic activity of Y240W and Y240W/Y481W against crystalline β-chitin was significantly decreased. However, the hydrolytic activity of Y481W was similar to that of the wild type, indicating some differences in the roles of Y240 and Y481 during the processive degradation of crystalline β-chitin. Taken together with the previous results, it was suggested that while Y240 and Y481 were required for the substrate binding, Y240 had additional roles in the processive degradation of crystalline β-chitin, possibly in guiding a chitin chain into the catalytic cleft.
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