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噬菌体核相关 RNA 结合蛋白是巨型噬菌体感染所必需的。

A phage nucleus-associated RNA-binding protein is required for jumbo phage infection.

机构信息

Department of Molecular Biology, University of California San Diego, La Jolla, CA 92093, USA.

Department of Cellular and Molecular Medicine, University of California San Diego, La Jolla, CA 92093, USA.

出版信息

Nucleic Acids Res. 2024 May 8;52(8):4440-4455. doi: 10.1093/nar/gkae216.

Abstract

Large-genome bacteriophages (jumbo phages) of the proposed family Chimalliviridae assemble a nucleus-like compartment bounded by a protein shell that protects the replicating phage genome from host-encoded restriction enzymes and DNA-targeting CRISPR-Cas nucleases. While the nuclear shell provides broad protection against host nucleases, it necessitates transport of mRNA out of the nucleus-like compartment for translation by host ribosomes, and transport of specific proteins into the nucleus-like compartment to support DNA replication and mRNA transcription. Here, we identify a conserved phage nuclear shell-associated protein that we term Chimallin C (ChmC), which adopts a nucleic acid-binding fold, binds RNA with high affinity in vitro, and binds phage mRNAs in infected cells. ChmC also forms phase-separated condensates with RNA in vitro. Targeted knockdown of ChmC using mRNA-targeting dCas13d results in accumulation of phage-encoded mRNAs in the phage nucleus, reduces phage protein production, and compromises virion assembly. Taken together, our data show that the conserved ChmC protein plays crucial roles in the viral life cycle, potentially by facilitating phage mRNA translocation through the nuclear shell to promote protein production and virion development.

摘要

大型基因组噬菌体(巨型噬菌体)属于拟议的 Chimaelliviridae 科,它们组装出一个由蛋白质外壳包围的类似细胞核的隔室,保护复制的噬菌体基因组免受宿主编码的限制酶和靶向 DNA 的 CRISPR-Cas 核酸酶的影响。虽然核壳提供了对宿主核酸酶的广泛保护,但它需要将 mRNA 从类似细胞核的隔室中运出,以便由宿主核糖体进行翻译,并将特定的蛋白质运入类似细胞核的隔室,以支持 DNA 复制和 mRNA 转录。在这里,我们鉴定出一种保守的噬菌体核壳相关蛋白,我们将其命名为 Chimallin C(ChmC),它采用核酸结合折叠,在体外以高亲和力结合 RNA,并在感染细胞中结合噬菌体 mRNA。ChmC 还可以与体外的 RNA 形成相分离的凝聚物。使用靶向 ChmC 的 mRNA 靶向 dCas13d 进行敲低会导致噬菌体编码的 mRNA 在噬菌体核内积累,减少噬菌体蛋白的产生,并损害病毒粒子的组装。总之,我们的数据表明,保守的 ChmC 蛋白在病毒生命周期中发挥着关键作用,可能通过促进噬菌体 mRNA 通过核壳的易位来促进蛋白的产生和病毒粒子的发育。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfff/11077065/a8f4d111876f/gkae216figgra1.jpg

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