Production and Immunogenicity of FeLV Gag-Based VLPs Exposing a Stabilized FeLV Envelope Glycoprotein

Author:

Ortiz Raquel12ORCID,Barajas Ana13,Pons-Grífols Anna12ORCID,Trinité Benjamin1ORCID,Tarrés-Freixas Ferran1ORCID,Rovirosa Carla1ORCID,Urrea Víctor1ORCID,Barreiro Antonio4ORCID,Gonzalez-Tendero Anna4,Rovira-Rigau Maria4,Cardona Maria4,Ferrer Laura4,Clotet Bonaventura135,Carrillo Jorge1,Aguilar-Gurrieri Carmen1ORCID,Blanco Julià1367ORCID

Affiliation:

1. IrsiCaixa, 08916 Badalona, Spain

2. Doctorate School, Microbiology Department, Universitat Autònoma de Barcelona, 08193 Bellaterra, Spain

3. Centre for Health and Social Care Research (CESS), Faculty of Medicine, University of Vic-Central University of Catalonia (UVic-UCC), 08500 Vic, Spain

4. HIPRA, 17170 Amer, Spain

5. Infectious Diseases Department, Germans Trias I Pujol Hospital, 08916 Badalona, Spain

6. Germans Trias I Pujol Research Institute (IGTP), 08916 Badalona, Spain

7. CIBERINFEC, ISCIII, 28029 Madrid, Spain

Abstract

The envelope glycoprotein (Env) of retroviruses, such as the Feline leukemia virus (FeLV), is the main target of neutralizing humoral response, and therefore, a promising vaccine candidate, despite its reported poor immunogenicity. The incorporation of mutations that stabilize analogous proteins from other viruses in their prefusion conformation (e.g., HIV Env, SARS-CoV-2 S, or RSV F glycoproteins) has improved their capability to induce neutralizing protective immune responses. Therefore, we have stabilized the FeLV Env protein following a strategy based on the incorporation of a disulfide bond and an Ile/Pro mutation (SOSIP) previously used to generate soluble HIV Env trimers. We have characterized this SOSIP-FeLV Env in its soluble form and as a transmembrane protein present at high density on the surface of FeLV Gag-based VLPs. Furthermore, we have tested its immunogenicity in DNA-immunization assays in C57BL/6 mice. Low anti-FeLV Env responses were detected in SOSIP-FeLV soluble protein-immunized animals; however, unexpectedly no responses were detected in the animals immunized with SOSIP-FeLV Gag-based VLPs. In contrast, high humoral response against FeLV Gag was observed in the animals immunized with control Gag VLPs lacking SOSIP-FeLV Env, while this response was significantly impaired when the VLPs incorporated SOSIP-FeLV Env. Our data suggest that FeLV Env can be stabilized as a soluble protein and can be expressed in high-density VLPs. However, when formulated as a DNA vaccine, SOSIP-FeLV Env remains poorly immunogenic, a limitation that must be overcome to develop an effective FeLV vaccine.

Funder

HIPRA

Agència de Gestió d'Ajuts Universitaris i de Recerca

Departament de Recerca i Universitats

Publisher

MDPI AG

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