A Novel Rotavirus Reverse Genetics Platform Supports Flexible Insertion of Exogenous Genes and Enables Rapid Development of a High-Throughput Neutralization Assay

Author:

Wei Jiajie1,Radcliffe Scott2,Pirrone Amanda1,Lu Meiqing1,Li Yuan1,Cassaday Jason1,Newhard William1,Heidecker Gwendolyn1,Rose II William2,He Xi1,Freed Daniel1,Citron Michael1,Espeseth Amy1,Wang Dai1

Affiliation:

1. Department of Infectious Diseases and Vaccines, Merck & Co., Inc., West Point, PA 19486, USA

2. Department of Quantitative Biosciences, Merck & Co., Inc., West Point, PA 19486, USA

Abstract

Despite the success of rotavirus vaccines, rotaviruses remain one of the leading causes of diarrheal diseases, resulting in significant childhood morbidity and mortality, especially in low- and middle-income countries. The reverse genetics system enables the manipulation of the rotavirus genome and opens the possibility of using rotavirus as an expression vector for heterologous proteins, such as vaccine antigens and therapeutic payloads. Here, we demonstrate that three positions in rotavirus genome—the C terminus of NSP1, NSP3 and NSP5—can tolerate the insertion of reporter genes. By using rotavirus expressing GFP, we develop a high-throughput neutralization assay and reveal the pre-existing immunity against rotavirus in humans and other animal species. Our work shows the plasticity of the rotavirus genome and establishes a high-throughput assay for interrogating humoral immune responses, benefiting the design of next-generation rotavirus vaccines and the development of rotavirus-based expression platforms.

Funder

Merck Sharp & Dohme Corp.

Publisher

MDPI AG

Subject

Virology,Infectious Diseases

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