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φPA3 噬菌体的核心被一个自组装的二维晶体格子所包围。

The ϕPA3 phage nucleus is enclosed by a self-assembling 2D crystalline lattice.

机构信息

Department of Biochemistry, University of California San Francisco, San Francisco, CA, 94143, USA.

Sauer Structural Biology Laboratory, Center for Biomedical Research Support, University of Texas at Austin, Austin, TX, USA.

出版信息

Nat Commun. 2023 Feb 18;14(1):927. doi: 10.1038/s41467-023-36526-9.

Abstract

To protect themselves from host attack, numerous jumbo bacteriophages establish a phage nucleus-a micron-scale, proteinaceous structure encompassing the replicating phage DNA. Bacteriophage and host proteins associated with replication and transcription are concentrated inside the phage nucleus while other phage and host proteins are excluded, including CRISPR-Cas and restriction endonuclease host defense systems. Here, we show that nucleus fragments isolated from ϕPA3 infected Pseudomonas aeruginosa form a 2-dimensional lattice, having p2 or p4 symmetry. We further demonstrate that recombinantly purified primary Phage Nuclear Enclosure (PhuN) protein spontaneously assembles into similar 2D sheets with p2 and p4 symmetry. We resolve the dominant p2 symmetric state to 3.9 Å by cryo-EM. Our structure reveals a two-domain core, organized into quasi-symmetric tetramers. Flexible loops and termini mediate adaptable inter-tetramer contacts that drive subunit assembly into a lattice and enable the adoption of different symmetric states. While the interfaces between subunits are mostly well packed, two are open, forming channels that likely have functional implications for the transport of proteins, mRNA, and small molecules.

摘要

为了防止被宿主攻击,许多巨型噬菌体建立了一个噬菌体核——一个包含复制噬菌体 DNA 的微米级蛋白质结构。与复制和转录相关的噬菌体和宿主蛋白集中在噬菌体核内,而其他噬菌体和宿主蛋白则被排除在外,包括 CRISPR-Cas 和限制内切酶宿主防御系统。在这里,我们表明,从感染铜绿假单胞菌的 ϕPA3 中分离出来的核片段形成了一个具有 p2 或 p4 对称性的二维晶格。我们进一步证明,重组纯化的主要噬菌体核包被(PhuN)蛋白可自发组装成具有 p2 和 p4 对称性的类似二维片层。我们通过 cryo-EM 将优势 p2 对称状态解析到 3.9 Å。我们的结构揭示了一个由两个结构域组成的核心,组织成准对称的四聚体。柔性环和末端介导可适应的四聚体间接触,驱动亚基组装成晶格,并允许采用不同的对称状态。虽然亚基之间的界面大部分都包装得很好,但有两个是开放的,形成了可能对蛋白质、mRNA 和小分子的运输具有功能意义的通道。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9eb/9938867/220fd4a1ad17/41467_2023_36526_Fig1_HTML.jpg

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