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Ty1逆转座需要一个可互换的朊病毒样结构域。

An interchangeable prion-like domain is required for Ty1 retrotransposition.

作者信息

Beckwith Sean L, Nomberg Emily J, Newman Abigail C, Taylor Jeannette V, Guerrero Ricardo C, Garfinkel David J

机构信息

Department of Biochemistry and Molecular Biology, University of Georgia, Athens, GA, 30602, USA.

Robert P. Apkarian Integrated Electron Microscopy Core at Emory University, Atlanta, GA, 30322, USA.

出版信息

bioRxiv. 2023 Feb 27:2023.02.27.530227. doi: 10.1101/2023.02.27.530227.

Abstract

UNLABELLED

Retrotransposons and retroviruses shape genome evolution and can negatively impact genome function. and its close relatives harbor several families of LTR-retrotransposons, the most abundant being Ty1 in several laboratory strains. The cytosolic foci that nucleate Ty1 virus-like particle (VLP) assembly are not well-understood. These foci, termed retrosomes or T-bodies, contain Ty1 Gag and likely Gag-Pol and the Ty1 mRNA destined for reverse transcription. Here, we report a novel intrinsically disordered N-terminal pr ion-like d omain (PrLD) within Gag that is required for transposition. This domain contains amino-acid composition similar to known yeast prions and is sufficient to nucleate prionogenesis in an established cell-based prion reporter system. Deleting the Ty1 PrLD results in dramatic VLP assembly and retrotransposition defects but does not affect Gag protein level. Ty1 Gag chimeras in which the PrLD is replaced with other sequences, including yeast and mammalian prionogenic domains, display a range of retrotransposition phenotypes from wildtype to null. We examine these chimeras throughout the Ty1 replication cycle and find that some support retrosome formation, VLP assembly, and retrotransposition, including the yeast Sup35 prion and the mouse PrP prion. Our interchangeable Ty1 system provides a useful, genetically tractable platform for studying PrLDs, complete with a suite of robust and sensitive assays, and host modulators developed to study Ty1 retromobility. Our work invites study into the prevalence of PrLDs in additional mobile elements.

SIGNIFICANCE

Retrovirus-like retrotransposons help shape the genome evolution of their hosts and replicate within cytoplasmic particles. How their building blocks associate and assemble within the cell is poorly understood. Here, we report a novel pr ion-like d omain (PrLD) in the budding yeast retrotransposon Ty1 Gag protein that builds virus-like particles. The PrLD has similar sequence properties to prions and disordered protein domains that can drive the formation of assemblies that range from liquid to solid. We demonstrate that the Ty1 PrLD can function as a prion and that certain prion sequences can replace the PrLD and support Ty1 transposition. This interchangeable system is an effective platform to study additional disordered sequences in living cells.

摘要

未标记

逆转座子和逆转录病毒塑造基因组进化,并可能对基因组功能产生负面影响。其近亲含有几个LTR逆转座子家族,在几个实验室菌株中最丰富的是Ty1。形成Ty1病毒样颗粒(VLP)组装的胞质焦点尚不清楚。这些焦点,称为逆转体或T体,包含Ty1 Gag以及可能的Gag-Pol和用于逆转录的Ty1 mRNA。在这里,我们报告了Gag中一种新的内在无序的N端类朊病毒结构域(PrLD),它是转座所必需的。该结构域的氨基酸组成与已知的酵母朊病毒相似,并且足以在已建立的基于细胞的朊病毒报告系统中引发朊病毒形成。删除Ty1 PrLD会导致显著的VLP组装和逆转座缺陷,但不影响Gag蛋白水平。PrLD被其他序列取代的Ty1 Gag嵌合体,包括酵母和哺乳动物的朊病毒结构域,表现出从野生型到无效的一系列逆转座表型。我们在整个Ty1复制周期中检查这些嵌合体,发现一些支持逆转体形成、VLP组装和逆转座,包括酵母Sup35朊病毒和小鼠PrP朊病毒。我们的可互换Ty1系统为研究PrLD提供了一个有用的、遗传上易于处理的平台,配有一套强大而灵敏的检测方法,以及为研究Ty1逆转移动性而开发的宿主调节剂。我们的工作促使人们研究PrLD在其他移动元件中的普遍性。

意义

逆转录病毒样逆转座子有助于塑造其宿主的基因组进化,并在细胞质颗粒内复制。人们对它们的组成部分如何在细胞内结合和组装了解甚少。在这里,我们报告了出芽酵母逆转座子Ty1 Gag蛋白中一种新的类朊病毒结构域(PrLD),它构建病毒样颗粒。PrLD具有与朊病毒和无序蛋白结构域相似的序列特性,这些结构域可以驱动从液体到固体的组装体形成。我们证明TyI PrLD可以作为一种朊病毒发挥作用,并且某些朊病毒序列可以取代PrLD并支持Ty1转座。这个可互换系统是研究活细胞中其他无序序列的有效平台。

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