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恶性疟原虫的“DEAD盒”解旋酶在较宽的pH范围内具有活性,且具有裂殖体阶段特异性。

'DEAD-box' helicase from Plasmodium falciparum is active at wide pH and is schizont stage-specific.

作者信息

Pradhan Arun, Chauhan Virander S, Tuteja Renu

机构信息

Malaria Group, International Centre for Genetic Engineering and Biotechnology, New Delhi, India.

出版信息

J Vector Borne Dis. 2007 Mar;44(1):12-22.

Abstract

BACKGROUND & OBJECTIVES: DNA helicases catalyse unwinding of duplex DNA in an ATP-dependent manner and are involved in all the basic genetic processes. In order to study these important enzymes in the human malaria parasite we have recently cloned the first full-length 'DEAD-box' helicase gene from Plasmodium falciparum (3D7). In the present study, we report some of the important activities of the encoded protein.

METHODS

We have expressed the P. falciparum helicase in Escherichia coli and characterised the encoded biochemically active helicase protein. The characterisation of the protein was carried out using radioactively labeled substrate and the standard strand displacement assay. The localisation of the enzyme was studied using immunofluorescence assay.

RESULTS & CONCLUSION: P. falciparum helicase gene is 1551 bp in length and encodes for a protein consisting of 516 amino acid residues with a predicted molecular mass of 59.8 kDa. The protein is designated as Plasmodium falciparum DEAD-box helicase 60 kDa in size (PfDH60). Purified PfDH60 showed ATP and Mg2+ dependent DNA unwinding, ssDNA-dependent ATPase and ATP-binding activities. Interestingly, this is a unique helicase because it works at a wide pH range (from 5.0-10.0). The peak expression of PfDH60 is mainly in schizont stages of the development of P. falciparum, where DNA replication is active. The cell-cycle dependent expression suggests that PfDH60 may be involved in the process of DNA replication and distinct cellular processes in the parasite and this study should make an important contribution in our better understanding of DNA metabolic pathways in the parasite.

摘要

背景与目的

DNA解旋酶以ATP依赖的方式催化双链DNA解旋,并参与所有基本的遗传过程。为了研究人类疟原虫中的这些重要酶,我们最近从恶性疟原虫(3D7)中克隆了首个全长“DEAD-box”解旋酶基因。在本研究中,我们报告了该编码蛋白的一些重要活性。

方法

我们在大肠杆菌中表达了恶性疟原虫解旋酶,并对编码的具有生化活性的解旋酶蛋白进行了表征。使用放射性标记的底物和标准链置换分析法对该蛋白进行表征。使用免疫荧光分析法研究了该酶的定位。

结果与结论

恶性疟原虫解旋酶基因长度为1551 bp,编码一个由516个氨基酸残基组成的蛋白,预测分子量为59.8 kDa。该蛋白被命名为大小为60 kDa的恶性疟原虫DEAD-box解旋酶(PfDH60)。纯化的PfDH60表现出ATP和Mg2+依赖的DNA解旋、单链DNA依赖的ATP酶和ATP结合活性。有趣的是,这是一种独特的解旋酶,因为它在很宽的pH范围(5.0 - 10.0)内起作用。PfDH60的峰值表达主要在恶性疟原虫发育的裂殖体阶段,此时DNA复制活跃。细胞周期依赖性表达表明PfDH60可能参与了寄生虫的DNA复制过程和独特的细胞过程,本研究应为我们更好地理解寄生虫中的DNA代谢途径做出重要贡献。

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