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Conservation of the prion properties of Ure2p through evolution

机译:通过进化保护Ure2p的pr病毒性质

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The yeast inheritable [URE3] element corresponds to a prion form of the nitrogen catabolism regulator Ure2p. We have isolated several orthologous URE2 genes in different yeast species: Saccharomyces paradoxus, S. uvarum, Kluyveromyces lactis, Candida albicans, and Schizosaccharomyces pombe. We show here by in silico analysis that the GST-like functional domain and the prion domain of the Ure2 proteins have diverged separately, the functional domain being more conserved through the evolution. The more extreme situation is found in the two S. pombe genes, in which the prion domain is absent. The functional analysis demonstrates that all the homologous genes except for the two S. pombe genes are able to complement the URE2 gene deletion in a S. cerevisiae strain. We show that in the two most closely related yeast species to S. cerevisiae, i.e., S. paradoxus and S. uvarum, the prion domains of the proteins have retained the capability to induce [URE3] in a S. cerevisiae strain. However, only the S. uvarum full-length Ure2p is able to behave as a prion. We also show that the prion inactivation mechanisms can be cross-transmitted between the S. cerevisiae and S. uvarum prions. [References: 34]
机译:酵母可遗传[URE3]元素对应于氮分解代谢调节剂Ure2p的a病毒形式。我们在不同的酵母物种中分离了几个直系同源的URE2基因:Saccharomyces paradoxus,S。uvarum,Kluyveromyces lactis,白色念珠菌和Schizosaccharomyces pombe。我们在这里通过计算机分析显示,Ure2蛋白的GST样功能域和the病毒域分别分开,功能域在进化过程中更加保守。在两个不存在病毒结构域的粟酒裂殖酵母基因中发现了更为极端的情况。功能分析表明,除了两个粟酒裂殖酵母基因外,所有同源基因都能够补充酿酒酵母菌株中的URE2基因缺失。我们表明,在与酿酒酵母最密切相关的两个酵母物种中,即悖论链球菌和葡萄球菌,蛋白质的病毒域保留了在酿酒酵母菌株中诱导[URE3]的能力。但是,只有葡萄球菌全长Ure2p才能充当a病毒。我们还显示that病毒的灭活机制可以在酿酒酵母和葡萄球菌。病毒之间交叉传播。 [参考:34]

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