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酵母核糖体P0蛋白与恶性疟原虫P0蛋白的功能互补

Functional complementation of yeast ribosomal P0 protein with Plasmodium falciparum P0.

作者信息

Aruna K, Chakraborty Tirtha, Rao Pavitra N, Santos Cruz, Ballesta Juan P G, Sharma Shobhona

机构信息

Department of Biological Sciences, Tata Institute of Fundamental Research, Homi Bhabha Road, Mumbai 400005, India.

出版信息

Gene. 2005 Aug 29;357(1):9-17. doi: 10.1016/j.gene.2005.04.007.

Abstract

A complex of three phosphoproteins (P0, P1 and P2) constitutes the stalk region at the GTPase center of the eukaryotic large ribosomal subunit, amongst which the protein P0 plays the most crucial role. Earlier studies have shown the functional complementation of the conditional P0-null mutant of Saccharomyces cerevisiae (W303dGP0) with orthologous P0 genes from fungal and mammalian organisms, but not the protozoan parasite Leishmania infantum. In this paper we show that the PfP0 gene from the protozoan malaria parasite Plasmodium falciparum can functionally complement the conditional P0-null W303dGP0 mutant of S. cerevisiae. Unlike the above orthologous genes, PfP0 gene could also rescue the D67dGP0 strain, which in addition to being a conditional null for ScP0 gene, is a null-mutant for both ScP1alpha and beta genes. However, under stress conditions such as high temperature, salt and osmolarity, PfP0 gene could not rescue D67dGP0 strain. Ribosomes purified from W303dGP0 carrying PfP0 gene did not contain ScP1 protein, indicating a lack of binding of ScP1 to PfP0 protein. Yeast 2-hybrid analysis further confirmed the lack of binding of ScP1 to PfP0 protein. The polymerizing activities of ribosomes with ScP0 or PfP0 protein, in the absence of ScP1 protein, were found to be about 40-45% that of ribosomes with all the yeast P-proteins. In its sensitivity to the inhibitor sordarin, PfP0 was similar to the P0 protein from the fungus Aspergillus fumigatus. These results indicate a closer functional relationship of P. falciparum P0 gene to fungal P0 genes.

摘要

三种磷蛋白(P0、P1和P2)的复合物构成了真核生物大核糖体亚基GTPase中心的柄部区域,其中蛋白质P0起着最为关键的作用。早期研究表明,酿酒酵母(W303dGP0)的条件性P0缺失突变体可被来自真菌和哺乳动物的直系同源P0基因功能互补,但不能被原生动物寄生虫婴儿利什曼原虫的P0基因互补。在本文中,我们表明来自原生动物疟原虫恶性疟原虫的PfP0基因可以在功能上互补酿酒酵母的条件性P0缺失W303dGP0突变体。与上述直系同源基因不同,PfP0基因还可以拯救D67dGP0菌株,该菌株除了是ScP0基因的条件性缺失突变体外,还是ScP1α和β基因的缺失突变体。然而,在高温、高盐和高渗透压等应激条件下,PfP0基因无法拯救D67dGP0菌株。从携带PfP0基因的W303dGP0中纯化的核糖体不含ScP1蛋白,表明ScP1与PfP0蛋白缺乏结合。酵母双杂交分析进一步证实了ScP1与PfP0蛋白缺乏结合。在没有ScP1蛋白的情况下,含有ScP0或PfP0蛋白的核糖体的聚合活性约为含有所有酵母P蛋白的核糖体的40-45%。在对抑制剂梭链孢酸的敏感性方面,PfP0与烟曲霉的P0蛋白相似。这些结果表明恶性疟原虫P0基因与真菌P0基因之间存在更密切的功能关系。

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