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朊病毒蛋白重塑赋予即时表型转换。

Prion protein remodelling confers an immediate phenotypic switch.

作者信息

Satpute-Krishnan Prasanna, Serio Tricia R

机构信息

Department of Molecular Biology, Cell Biology and Biochemistry, Brown University, Providence, Rhode Island 02912, USA.

出版信息

Nature. 2005 Sep 8;437(7056):262-5. doi: 10.1038/nature03981.

Abstract

In a variety of systems, proteins have been linked to processes historically limited to nucleic acids, such as infectivity and inheritance. These atypical proteins, termed prions, lack sequence homology but are collectively defined by their capacity to adopt multiple physical and therefore functional states in vivo. Newly synthesized prion protein generally adopts the form already present in the cell, and this in vivo folding bias directs the near faithful transmission of the corresponding phenotypic state. Switches between the prion and non-prion phenotypes can occur in vivo; however, the fate of existing protein during these transitions and its effects on the emergence of new traits remain major unanswered questions. Here, we determine the changes in protein-state that induce phenotypic switching for the yeast prion Sup35/[PSI(+)]. We show that the prion form does not need to be specified by an alternate misfolding pathway initiated during Sup35 synthesis but instead can be accessed by mature protein. This remodelling of protein from one stable form to another is accompanied by the loss of Sup35 activity, evoking a rapid change in cellular phenotype within a single cell cycle.

摘要

在多种系统中,蛋白质已与历史上仅限于核酸的过程相关联,如感染性和遗传性。这些非典型蛋白质被称为朊病毒,它们缺乏序列同源性,但共同的定义是它们在体内能够呈现多种物理状态并因此具有多种功能状态。新合成的朊病毒蛋白通常采用细胞中已存在的形式,这种体内折叠偏好指导相应表型状态的近乎忠实的传递。朊病毒和非朊病毒表型之间的转换可以在体内发生;然而,在这些转变过程中现有蛋白质的命运及其对新性状出现的影响仍然是主要未解决的问题。在这里,我们确定了诱导酵母朊病毒Sup35/[PSI(+)]表型转换的蛋白质状态变化。我们表明,朊病毒形式不需要由Sup35合成过程中启动的另一种错误折叠途径来指定,而是可以由成熟蛋白获得。蛋白质从一种稳定形式重塑为另一种稳定形式伴随着Sup35活性的丧失,在单个细胞周期内引发细胞表型的快速变化。

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