Transfection of exogenous rotavirus rearranged RNA segments in cells infected with a WT rotavirus results in subsequent gene rearrangements

Author:

Duponchel Sarah12,Troupin Cécile12,Vu Lan Trang12,Schnuriger Aurélie312,Trugnan Germain12,Garbarg-Chenon Antoine312

Affiliation:

1. ERL U1157/UMR 7203, Institut National de la Santé et de la Recherche Médicale, Paris, France

2. Micro-Organismes, Molécules Bioactives et Physiopathologie Intestinale, Université Pierre et Marie Curie, Paris 6, Paris, France

3. Laboratoire de Virologie, Hôpital Armand Trousseau, Assistance Publique – Hôpitaux de Paris, Paris, France

Abstract

Group A rotaviruses, members of the family Reoviridae, are a major cause of infantile acute gastroenteritis. The rotavirus genome consists of 11 dsRNA segments. In some cases, an RNA segment is replaced by a rearranged RNA segment, which is derived from its standard counterpart by partial sequence duplication. It has been shown that some rearranged segments are preferentially encapsidated into viral progenies after serial passages in cell culture. Based on this characteristic, a reverse genetics system was used previously to introduce exogenous segment 7 rearrangements into an infectious rotavirus. This study extends this reverse genetics system to RNA segments 5 and 11. Transfection of exogenous rotavirus rearranged RNA segment 5 or 11 into cells infected with a WT helper rotavirus (bovine strain RF) resulted in subsequent gene rearrangements in the viral progeny. Whilst recombinant viruses were rescued with an exogenous rearranged segment 11, the exogenous segment was modified by a secondary rearrangement. The occurrence of spontaneous rearrangements of WT or exogenous segments is a major hindrance to the use of this reverse genetics approach.

Publisher

Microbiology Society

Subject

Virology

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