细红酵母d -氨基酸氧化酶二聚体形成的结构决定因素的解剖:betaF5-betaF6环大小的作用。

Luciano Piubelli, Gianluca Molla, Laura Caldinelli, Mirella S Pilone, Loredano Pollegioni
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引用次数: 11

摘要

通过位点定向诱变研究了红酵母d-氨基酸氧化酶(RgDAAO)中连接β链F5和F6(21个氨基酸,pro302 - leu - asp - arg - thr - lys - ser - ser - leu - gly - arg - gly - ser - ala - arg - ala - ala - lys - glu322)的作用。该环被认为在这种二聚体黄酶的“头到尾”单体-单体相互作用中发挥重要作用:特别是,通过一个单体的betaF5-betaF6环的正电荷残基与另一个单体的α -螺旋I3'和I3"的负电荷残基之间的静电相互作用。我们产生了一个RgDAAO突变体(即DAAO-DeltaLOOP2),其中只引入了轻微的结构扰动(只有五个氨基酸被删除;betaF5-betaF6环的新序列为Pro302-Leu-Asp-Arg-Thr-Leu-Gly-Arg-Gly-Ser-Ala-Arg-Ala-Ala-Lys-Glu317), betaF5-betaF6环的电荷未被修改。DeltaLOOP2突变体为单体,与FAD辅因子结合较弱,动力学效率降低,光谱性质略有改变。短版本的环不允许正确的单体-单体相互作用,并且它在单体DAAO中的存在是一个不稳定的结构元素,因为DeltaLOOP2突变体对蛋白质水解非常敏感。这些结果证实了该环在亚基相互作用中的作用,从而稳定了RgDAAO的唯一二聚体形式,并提出了即使短时间删除该环也会产生酶结构-功能特性的一致变化的证据。
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Dissection of the structural determinants involved in formation of the dimeric form of D-amino acid oxidase from Rhodotorula gracilis: role of the size of the betaF5-betaF6 loop.

The role of the long loop connecting beta-strands F5 and F6 (21 amino acids, Pro302-Leu-Asp-Arg-Thr-Lys-Ser-Pro-Leu-Ser-Leu-Gly-Arg-Gly-Ser-Ala-Arg-Ala-Ala-Lys-Glu322) present in Rhodotorula gracilis d-amino acid oxidase (RgDAAO) was investigated by site-directed mutagenesis. This loop was proposed to play an important role in the 'head-to-tail' monomer-monomer interaction of this dimeric flavoenzyme: in particular, by means of electrostatic interactions between positively charged residues of the betaF5-betaF6 loop of one monomer and negatively charged residues belonging to the alpha-helices I3' and I3" of the other monomer. We produced a mutant of RgDAAO (namely, DAAO-DeltaLOOP2), in which only minor structural perturbations were introduced (only five amino acids were deleted; new sequence of the betaF5-betaF6 loop is Pro302-Leu-Asp-Arg-Thr-Leu-Gly-Arg-Gly-Ser-Ala-Arg-Ala-Ala-Lys-Glu317), and the charge of the betaF5-betaF6 loop not modified. The DeltaLOOP2 mutant is monomeric, has a weaker binding with the FAD cofactor, a decrease of the kinetic efficiency, and slight modifications in its spectral properties. The short version of the loop does not allow a correct monomer-monomer interaction, and its presence in the monomeric DAAO is a destabilizing structural element since the DeltaLOOP2 mutant is highly susceptible to proteolysis. These results, confirming the role of this loop in the subunits interaction and thus in stabilization of the sole dimeric form of RgDAAO, put forward the evidence that even a short deletion of the loop generates a consistent variation of the enzyme structure-function properties.

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