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通过定点诱变鉴定深红红螺菌L-天冬酰胺酶中的功能区域。

Identification of functional regions in the Rhodospirillum rubrum L-asparaginase by site-directed mutagenesis.

作者信息

Pokrovskaya M V, Aleksandrova S S, Pokrovsky V S, Veselovsky A V, Grishin D V, Abakumova O Yu, Podobed O V, Mishin A A, Zhdanov D D, Sokolov N N

机构信息

Institute of Biomedical Chemistry, ul. Pogodinskaya 10, Moscow, 119121, Russia,

出版信息

Mol Biotechnol. 2015 Mar;57(3):251-64. doi: 10.1007/s12033-014-9819-0.

Abstract

Site-directed mutagenesis of Rhodospirillum rubrum L-asparaginase (RrA) was performed in order to identify sites of the protein molecule important for its therapeutic and physico-chemical properties. Ten multipoint mutant genes were obtained, and five recombinant RrA variants were expressed in E. coli BL21(DE3) cells and isolated as functionally active highly purified proteins. Protein purification was performed using Q-Sepharose and DEAE-Toyopearl chromatography. Overall yield of the active enzymes was 70-80 %, their specific activity at pH 7.4 and 37 °C varied of 140-210 U/mg. L-Glutaminase activity did not exceed 0.01 % of L-asparaginase activity. All RrA mutants showed maximum enzyme activity at pH 9.3-9.5 and 53-58 °C. Km and Vmax values for L-asparagine were evaluated for all mutants. Mutations G86P, D88H, M90K (RrAH), G121L, D123A (RrАI) caused the loss of enzyme activity and confirmed the importance of these sites in the implementation of catalytic functions. Removal of four residues from C-terminal area of the enzyme (RrAK) resulted in the enzyme instability. Mutations D60K, F61L(RrАD), and R118H, G120R(RrАJ) led to the improvement of kinetic parameters and enzyme stabilization. Substitutions E149R, V150P (RrАB) improved antineoplastic and cytotoxic activity of the RrA. A64V, E67K substitutions, especially in combination with E149R, V150P (RrАE), considerably destabilized recombinant enzyme.

摘要

为了确定对红螺菌L-天冬酰胺酶(RrA)的治疗和物理化学性质重要的蛋白质分子位点,进行了定点诱变。获得了10个多点突变基因,5种重组RrA变体在大肠杆菌BL21(DE3)细胞中表达,并作为功能活性的高度纯化蛋白分离出来。使用Q-琼脂糖凝胶和DEAE- Toyopearl色谱进行蛋白质纯化。活性酶的总产率为70-80%,其在pH 7.4和37°C下的比活性在140-210 U/mg之间变化。L-谷氨酰胺酶活性不超过L-天冬酰胺酶活性的0.01%。所有RrA突变体在pH 9.3-9.5和53-58°C下显示出最大酶活性。评估了所有突变体对L-天冬酰胺的Km和Vmax值。突变G86P、D88H、M90K(RrAH)、G121L、D123A(RrАI)导致酶活性丧失,并证实了这些位点在催化功能实现中的重要性。从酶的C末端区域去除四个残基(RrAK)导致酶不稳定。突变D60K、F61L(RrАD)和R118H、G120R(RrАJ)导致动力学参数的改善和酶的稳定。取代E149R、V150P(RrАB)提高了RrA的抗肿瘤和细胞毒性活性。A64V、E67K取代,特别是与E149R、V150P(RrАE)组合时,相当大地使重组酶不稳定。

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