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Updated: Jul 12, 2026

Bacterial Artificial Chromosomes: A Functional Genomics Tool for the Study of Positive-strand RNA Viruses
Published on: December 29, 2015
Distinct RNA engagements define genome import and replication elongation in alphaviruses
Yaw Bia Tan1,2, Yongbo Luo1,2, Ping Liu1,2
1Lee Kong Chian School of Medicine, Nanyang Technological University, 59 Nanyang Drive, Singapore 636921.
None:
Membrane-associated replication complexes (RCs) are a hallmark of alphaviruses, yet the mechanisms by which viral RNA is delivered into these compartments and coordinated with RNA synthesis remain incompletely understood. Here, we present a cryo-electron microscopy (cryo-EM) structure of the Chikungunya virus (CHIKV) RC core, consisting of nsP1, nsP2, and nsP4, in complex with the replicative RNA substrates, revealing two spatially distinct RNA-binding sites. A single-stranded RNA (ssRNA) engages the nsP2 helicase and extends toward a pore formed at the nsP1-nsP4 interface, whereas a double-stranded RNA (dsRNA) is accommodated within the central catalytic pocket of the nsP4 polymerase in an elongation configuration. Structural analysis suggests a helicase-assisted RNA threading model in which the 5' end of the viral genome is guided toward the spherule lumen through the RC pore. Concurrently, the nsP4 polymerase engages dsRNA in a manner consistent with RNA synthesis. This work provides a structural framework for understanding RNA trafficking and enzymatic coordination in viral replication organelles.
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