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通过对催化三联体组氨酸周围氨基酸残基进行定点诱变来调节黏质沙雷氏菌寡肽酶B的活性

Activity modulation of the oligopeptidase B from Serratia proteamaculans by site-directed mutagenesis of amino acid residues surrounding catalytic triad histidine.

作者信息

Mikhailova Anna G, Rakitina Tatiana V, Timofeev Vladimir I, Karlinsky David M, Korzhenevskiy Dmitry A, Agapova Yulia К, Vlaskina Anna V, Ovchinnikova Marina V, Gorlenko Valentina A, Rumsh Lev D

机构信息

Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, Miklukho-Maklaya St.16/10, Moscow, 117997, Russian Federation.

Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, Miklukho-Maklaya St.16/10, Moscow, 117997, Russian Federation; National Research Center "Kurchatov Institute", Ak. Kurchatov square 1, Moscow, 123182, Russian Federation.

出版信息

Biochimie. 2017 Aug;139:125-136. doi: 10.1016/j.biochi.2017.05.013. Epub 2017 May 27.

Abstract

Oligopeptidase B (OpdB; EC 3.4.21.83) is a trypsin-like peptidase belonging to the family of serine prolyl oligopeptidases; two-domain structure of the enzyme includes C-terminal peptidase catalytic domain and N-terminal seven-bladed β-propeller domain. Importance of the interface between these domains and particularly of the 5 salt bridges for enzyme activity was established for protozoan OpdBs. However, these salt bridges are not conserved in γ -proteobacterial OpdBs including the peptidase from Serratia proteamaculans (PSP). In this work, using comparative modelling and protozoan OpdBs' crystal structures we created 3D models of PSP in open and closed forms to elucidate the mechanism underlying inactivation of the truncated form of PSP1-655 obtained earlier. Analysis of the models shows that in the closed form of PSP charged amino acid residues of histidine loop, surrounding the catalytic triad His652, participate in formation of the inter-domain contact interface between catalytic and β-propeller domains, while in the open form of PSP disconnection of the catalytic triad and distortion of these contacts can be observed. Complete destruction of this interface by site-directed mutagenesis causes inactivation of PSP while elimination of the individual contacts leads to differential effects on the enzyme activity and substrate specificity. Thus, we identified structural factors regulating activity of PSP and supposedly of other γ-proteobacterial OpdBs and discovered the possibility of directed modulation of their enzymatic features.

摘要

寡肽酶B(OpdB;EC 3.4.21.83)是一种类胰蛋白酶肽酶,属于丝氨酸脯氨酰寡肽酶家族;该酶的双结构域包括C端肽酶催化结构域和N端七叶β-螺旋桨结构域。对于原生动物的寡肽酶B,已确定这些结构域之间的界面,特别是5个盐桥对酶活性的重要性。然而,这些盐桥在γ-变形菌纲寡肽酶B中并不保守,包括来自黏质沙雷氏菌(PSP)的肽酶。在这项研究中,我们利用比较建模和原生动物寡肽酶B的晶体结构,创建了开放和闭合形式的PSP三维模型,以阐明先前获得的截短形式PSP1-655失活的潜在机制。模型分析表明,在PSP的闭合形式中,围绕催化三联体His652的组氨酸环带电荷氨基酸残基参与催化结构域和β-螺旋桨结构域之间的域间接触界面的形成,而在PSP的开放形式中,可以观察到催化三联体的断开和这些接触的扭曲。通过定点诱变完全破坏该界面会导致PSP失活,而消除单个接触会对酶活性和底物特异性产生不同影响。因此,我们确定了调节PSP以及可能其他γ-变形菌纲寡肽酶B活性的结构因素,并发现了定向调节其酶学特性的可能性。

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