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Kinetic and molecular characterization of the pyruvate phosphate dikinase from Trypanosoma cruzi

机译:克鲁氏锥虫丙酮酸磷酸二激酶的动力学和分子表征

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摘要

Trypanosoma cruzi, like other trypanosomatids analyzed so far, can use both glucose and amino acids as carbon and energy source. In these parasites, glycolysis is compartmentalized in glycosomes, authentic but specialized peroxisomes. The major part of this pathway, as well as a two-branched glycolytic auxiliary system, are present in these organelles. The first enzyme of one branch of this auxiliary system is the PPi-dependent pyruvate phosphate dikinase (PPDK) that converts phosphoenolpyruvate (PEP), inorganic pyrophosphate (PPi) and AMP into pyruvate, inorganic phosphate (Pi) and ATP, thus contributing to the ATP/ADP balance within the glycosomes. In this work we cloned, expressed and purified the T. cruzi PPDK. It kinetic parameters were determined, finding KM values for PEP, PPi and AMP of 320, 70 and 17 mu M, respectively. Using molecular exclusion chromatography,. two native forms of the enzyme were found with estimated molecular weights of 200 and 100 kDa, corresponding to a homodimer and monomer, respectively. It was established that T. cruzi PPDK's specific activity can be enhanced up to 2.6 times by the presence of ammonium in the assay mixture. During growth of epimastigotes in batch culture an apparent decrease in the specific activity of PPDK was observed. However, when its activity is normalized for the presence of ammonium in the medium, no significant modification of the enzyme activity per cell in time was found. (C) 2016 Elsevier Inc. All rights reserved.
机译:就像到目前为止分析过的其他锥虫一样,克氏锥虫可以同时使用葡萄糖和氨基酸作为碳和能源。在这些寄生虫中,糖酵解是在糖体中进行的,糖体是真实但专门的过氧化物酶体。这些细胞器中存在该途径的主要部分以及两分支的糖酵解辅助系统。该辅助系统一个分支的第一个酶是依赖PPi的丙酮酸丙酮酸磷酸二激酶(PPDK),它将磷酸烯醇丙酮酸(PEP),无机焦磷酸盐(PPi)和AMP转化为丙酮酸,无机磷酸盐(Pi)和ATP,从而有助于糖体内的ATP / ADP平衡。在这项工作中,我们克隆,表达和纯化了克鲁斯锥虫PPDK。确定其动力学参数,得出PEP,PPi和AMP的KM值分别为320、70和17μM。采用分子排阻色谱法。发现了两种天然形式的酶,其估计分子量分别为200和100 kDa,分别对应于同型二聚体和单体。已经确定,通过在测定混合物中存在铵,可以将克鲁维氏酵母PPDK的比活性提高至2.6倍。在分批培养的附生鞭毛体生长期间,观察到PPDK的比活性明显降低。然而,当针对培养基中铵的存在将其活性标准化时,未发现每个细胞的酶活性及时发生显着改变。 (C)2016 Elsevier Inc.保留所有权利。

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