Early Porcine Sapovirus Infection Disrupts Tight Junctions and Uses Occludin as a Coreceptor

Author:

Alfajaro Mia Madel1,Cho Eun-Hyo1,Kim Deok-Song1,Kim Ji-Yun1,Park Jun-Gyu1,Soliman Mahmoud1,Baek Yeong-Bin1,Park Chul-Ho2,Kang Mun-Il1,Park Sang-Ik1,Cho Kyoung-Oh1

Affiliation:

1. Laboratory of Veterinary Pathology, College of Veterinary Medicine, Chonnam National University, Gwangju, Republic of Korea

2. Chonnam National University Veterinary Teaching Hospital, Gwangju, Republic of Korea

Abstract

Sapoviruses (SaVs) cause severe acute gastroenteritis in humans and animals. Although they replicate in intestinal epithelial cells, which are tightly sealed by apical-junctional complexes, such as tight junctions (TJs), the mechanisms by which SaVs hijack TJs and their proteins for successful entry and infection remain largely unknown. Here, we demonstrate that porcine SaVs (PSaVs) induce early dissociation of TJs, allowing them to bind to the TJ protein occludin as a functional coreceptor. PSaVs then travel in a complex with occludin into late endosomes through Rab5- and Rab7-dependent trafficking. Claudin-1, another TJ protein, does not directly interact with PSaV but facilitates the entry of PSaV into cells as an entry factor. This work contributes to our understanding of the entry of SaV and other caliciviruses into cells and may aid in the development of efficient and affordable drugs to treat SaV infections.

Funder

Ministry of Science, ICT and Future Planning

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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