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恶性疟原虫:乳酸脱氢酶的增强可溶性表达、纯化及生化特性分析

Plasmodium falciparum: enhanced soluble expression, purification and biochemical characterization of lactate dehydrogenase.

作者信息

Berwal Ritu, Gopalan Natarajan, Chandel Kshitij, Prasad G B K S, Prakash Shri

机构信息

Defence Research and Development Establishment, Jhansi Road, Gwalior 474002, Madhya Pradesh, India.

出版信息

Exp Parasitol. 2008 Oct;120(2):135-41. doi: 10.1016/j.exppara.2008.06.006. Epub 2008 Jun 21.

Abstract

Plasmodium lactate dehydrogenase (pLDH), owing to unique structural and kinetic properties, is a well known target for antimalarial compounds. To explore a new approach for high level soluble expression of Plasmodium falciparum lactate dehydrogenase (PfLDH) in E. coli, PfLDH encoding sequence was cloned into pQE-30 Xa vector. When transformed E. coli SG13009 cells were induced at 37 degrees C with 0.5mM isopropyl beta-d-thiogalactoside (IPTG) concentration, the protein was found to be exclusively associated with inclusion bodies. By reducing cell growth temperature to 15 degrees C and IPTG concentration to 0.25 mM, it was possible to get approximately 82% of expressed protein in soluble form. Recombinant PfLDH (rPfLDH) was purified to homogeneity yielding 18 mg of protein/litre culture. rPfLDH was found to be biologically active with specific activity of 453.8 micromol/min/mg. The enzyme exhibited characteristic reduced substrate inhibition and enhanced k(cat) [(3.2+/-0.02)x10(4)] with 3-acetylpyridine adenine dinucleotide (APAD+). The procedure described in this study may provide a reliable and simple method for production of large quantities of soluble and biologically active PfLDH.

摘要

疟原虫乳酸脱氢酶(pLDH)由于其独特的结构和动力学特性,是抗疟化合物的一个众所周知的靶点。为了探索一种在大肠杆菌中高水平可溶性表达恶性疟原虫乳酸脱氢酶(PfLDH)的新方法,将PfLDH编码序列克隆到pQE - 30 Xa载体中。当用0.5mM异丙基β - D - 硫代半乳糖苷(IPTG)在37℃诱导转化的大肠杆菌SG13009细胞时,发现该蛋白质完全与包涵体相关。通过将细胞生长温度降至15℃并将IPTG浓度降至0.25mM,有可能获得约82%的可溶性表达蛋白。重组PfLDH(rPfLDH)被纯化至同质,每升培养物产生18mg蛋白质。发现rPfLDH具有生物活性,比活性为453.8微摩尔/分钟/毫克。该酶表现出特征性的底物抑制降低和与3 - 乙酰吡啶腺嘌呤二核苷酸(APAD +)相比增强的k(cat) [(3.2±0.02)x10(4)]。本研究中描述的方法可能为大量生产可溶性和生物活性PfLDH提供一种可靠且简单的方法。

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