首页> 外文OA文献 >Dissection of the gene of the bifunctional PGK-TIM fusion protein from the hyperthermophilic bacterium Thermotoga maritima: design and characterization of the separate triosephosphate isomerase.
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Dissection of the gene of the bifunctional PGK-TIM fusion protein from the hyperthermophilic bacterium Thermotoga maritima: design and characterization of the separate triosephosphate isomerase.

机译:从嗜热嗜热菌中提取双功能PGK-TIM融合蛋白的基因:设计和鉴定单独的磷酸三糖异构酶。

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摘要

Triosephosphate isomerase (TIM), from the hyperthermophilic bacterium Thermotoga maritima, has been shown to be covalently linked to phosphoglycerate kinase (PGK) forming a bifunctional fusion protein with TIM as the C-terminal portion of the subunits of the tetrameric protein (Schurig et al., EMBO J 14:442-451, 1995). To study the effect of the anomalous state of association on the structure, stability, and function of Thermotoga TIM, the isolated enzyme was cloned and expressed in Escherichia coli, and compared with its wild-type structure in the PGK-TIM fusion protein. After introducing a start codon at the beginning of the tpi open reading frame, the gene was expressed in E.c.BL21(DE3)/ pNBTIM. The nucleotide sequence was confirmed and the protein purified as a functional dimer of 56.5 kDa molecular mass. Spectral analysis, using absorption, fluorescence emission, near- and far-UV circular dichroism spectroscopy were used to compare the separated Thermotoga enzyme with its homologs from mesophiles. The catalytic properties of the enzyme at approximately 80 degrees C are similar to those of its mesophilic counterparts at their respective physiological temperatures, in accordance with the idea that under in vivo conditions enzymes occupy corresponding states. As taken from chaotropic and thermal denaturation transitions, the separated enzyme exhibits high intrinsic stability, with a half-concentration of guanidinium-chloride at 3.8 M, and a denaturation half-time at 80 degrees C of 2 h. Comparing the properties of the TIM portion of the PGK-TIM fusion protein with those of the isolated recombinant TIM, it is found that the fusion of the two enzymes not only enhances the intrinsic stability of TIM but also its catalytic efficiency.
机译:来自嗜热嗜热菌嗜热菌(Thermotoga maritima)的磷酸三糖异构酶(TIM)已显示与磷酸甘油酸激酶(PGK)共价连接,形成双功能融合蛋白,其中TIM为四聚体蛋白亚基的C端部分(Schurig等人(EMBO J 14:442-451,1995)。为了研究异常缔合状态对Thermotoga TIM的结构,稳定性和功能的影响,将分离的酶克隆并在大肠杆菌中表达,并将其与PGK-TIM融合蛋白中的野生型结构进行比较。在tpi开放阅读框的开头引入起始密码子后,该基因在E.c.BL21(DE3)/ pNBTIM中表达。确认核苷酸序列,并将蛋白质纯化为56.5kDa分子量的功能性二聚体。使用吸收,荧光发射,近紫外和远紫外圆二色性光谱进行光谱分析,以比较分离的嗜热单胞菌酶与嗜温菌的同系物。根据在体内条件下酶占据相应状态的想法,该酶在约80摄氏度下的催化特性与其嗜温对应物的催化特性相似。从离液和热变性转变中可以看出,分离的酶具有很高的固有稳定性,氯化胍的一半浓度为3.8 M,80摄氏度的变性时间为2 h。将PGK-TIM融合蛋白的TIM部分的特性与分离的重组TIM的那些特性进行比较,发现两种酶的融合不仅增强了TIM的固有稳定性,而且还增强了其催化效率。

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