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令人难以置信的庞大规模:人工智能赋能的冷冻电镜揭示人类巨细胞病毒被膜结构。

The incredible bulk: Human cytomegalovirus tegument architectures uncovered by AI-empowered cryo-EM.

机构信息

Molecular Biology Institute, University of California, Los Angeles (UCLA), Los Angeles, CA 90095, USA.

California NanoSystems Institute, University of California, Los Angeles (UCLA), Los Angeles, CA 90095, USA.

出版信息

Sci Adv. 2024 Feb 23;10(8):eadj1640. doi: 10.1126/sciadv.adj1640.

Abstract

The compartmentalization of eukaryotic cells presents considerable challenges to the herpesvirus life cycle. The herpesvirus tegument, a bulky proteinaceous aggregate sandwiched between herpesviruses' capsid and envelope, is uniquely evolved to address these challenges, yet tegument structure and organization remain poorly characterized. We use deep-learning-enhanced cryogenic electron microscopy to investigate the tegument of human cytomegalovirus virions and noninfectious enveloped particles (NIEPs; a genome packaging-aborted state), revealing a portal-biased tegumentation scheme. We resolve atomic structures of portal vertex-associated tegument (PVAT) and identify multiple configurations of PVAT arising from layered reorganization of pUL77, pUL48 (large tegument protein), and pUL47 (inner tegument protein) assemblies. Analyses show that pUL77 seals the last-packaged viral genome end through electrostatic interactions, pUL77 and pUL48 harbor a head-linker-capsid-binding motif conducive to PVAT reconfiguration, and pUL47/48 dimers form 45-nm-long filaments extending from the portal vertex. These results provide a structural framework for understanding how herpesvirus tegument facilitates and evolves during processes spanning viral genome packaging to delivery.

摘要

真核细胞的区室化给疱疹病毒的生命周期带来了相当大的挑战。疱疹病毒的被膜,一种夹在疱疹病毒衣壳和包膜之间的大型蛋白聚集物,是为了应对这些挑战而独特进化的,但被膜的结构和组织仍未得到很好的描述。我们使用深度学习增强的低温电子显微镜来研究人巨细胞病毒病毒粒子和非感染性包膜颗粒(NIEPs;基因组包装中止状态)的被膜,揭示了一种偏向于门控的被膜化方案。我们解析了门控顶点相关被膜(PVAT)的原子结构,并确定了源自 pUL77、pUL48(大被膜蛋白)和 pUL47(内被膜蛋白)组装分层重组的多种 PVAT 构型。分析表明,pUL77 通过静电相互作用封闭最后包装的病毒基因组末端,pUL77 和 pUL48 具有有利于 PVAT 重构的头部接头-衣壳结合基序,pUL47/48 二聚体形成 45nm 长的纤维从门控顶点延伸。这些结果为理解疱疹病毒被膜如何在从病毒基因组包装到传递的过程中促进和进化提供了结构框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5133/10889378/d42aa214d7e2/sciadv.adj1640-f1.jpg

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