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Chaperone Role for Proteins p618 and p892 in the Extracellular Tail Development of Acidianus Two-Tailed Virus

机译:伴侣蛋白p618和p892在酸性双尾病毒胞外尾发育中的作用

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摘要

The crenarchaeal Acidianus two-tailed virus (ATV) undergoes a remarkable morphological development, extracellularly and independently of host cells, by growing long tails at each end of a spindle-shaped virus particle. Initial work suggested that an intermediate filament-like protein, p800, is involved in this process. We propose that an additional chaperone system is required, consisting of a MoxR-type AAA ATPase (p618) and a von Willebrand domain A (VWA)-containing cochaperone, p892. Both proteins are absent from the other known bicaudavirus, STSV1, which develops a single tail intracellularly. p618 exhibits ATPase activity and forms a hexameric ring complex that closely resembles the oligomeric complex of the MoxR-like protein RavA (YieN). ATV proteins p387, p653, p800, and p892 interact with p618, and with the exception of p800, all bind to DNA. A model is proposed to rationalize the interactions observed between the different protein and DNA components and to explain their possible structural and functional roles in extracellular tail development.
机译:crenarchaeal Acidianus两尾病毒(ATV)通过在纺锤形病毒颗粒的两端长出长尾巴,在细胞外并独立于宿主细胞而经历了显着的形态学发展。最初的工作表明,中间丝状蛋白p800参与了该过程。我们建议需要一个附加的伴侣系统,该系统由MoxR型AAA ATPase(p618)和包含von Willebrand域A(VWA)的伴侣蛋白p892组成。这两种蛋白都不存在于另一种已知的比柯达病毒STSV1中,后者在细胞内发育出一条尾巴。 p618表现出ATPase活性,并形成六聚环复合物,该复合物与MoxR样蛋白RavA(YieN)的寡聚复合物非常相似。 ATV蛋白p387,p653,p800和p892与p618相互作用,除p800外,所有蛋白均与DNA结合。提出了一个模型,以合理化观察到的不同蛋白质和DNA组分之间的相互作用,并解释它们在细胞外尾巴发育中可能的结构和功能作用。

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