Targeting plasmid-encoded proteins that contain immunoglobulin-like domains to combat antimicrobial resistance

Author:

Prieto Alejandro1ORCID,Miró Luïsa23,Margolles Yago4,Bernabeu Manuel1,Salguero David1,Merino Susana1,Tomas Joan1,Corbera Juan Alberto5ORCID,Perez-Bosque Anna23ORCID,Huttener Mario1,Fernández Luis Ángel4,Juarez Antonio16ORCID

Affiliation:

1. Department of Genetics, Microbiology and Statistics, University of Barcelona

2. Department of Biochemistry and Physiology, Universitat de Barcelona

3. Institut de Nutrició i Seguretat Alimentària, Universitat de Barcelona

4. Department of Microbial Biotechnology, Centro Nacional de Biotecnología, Consejo Superior de Investigaciones Científicas (CNB-CSIC)

5. Instituto Universitario de Investigaciones Biomédicas y Sanitarias (IUIBS), Facultad de Veterinaria, Universidad de Las Palmas de Gran Canaria (ULPGC), Campus Universitario de Arucas

6. Institute for Bioengineering of Catalonia, The Barcelona Institute of Science and Technology

Abstract

Antimicrobial resistance (AMR) poses a significant threat to human health. Although vaccines have been developed to combat AMR, it has proven challenging to associate specific vaccine antigens with AMR. Bacterial plasmids play a crucial role in the transmission of AMR. Our recent research has identified a group of bacterial plasmids (specifically, IncHI plasmids) that encode large molecular mass proteins containing bacterial immunoglobulin-like domains. These proteins are found on the external surface of the bacterial cells, such as in the flagella or conjugative pili. In this study, we show that these proteins are antigenic and can protect mice from infection caused by an AMR Salmonella strain harboring one of these plasmids. Furthermore, we successfully generated nanobodies targeting these proteins, that were shown to interfere with the conjugative transfer of IncHI plasmids. Considering that these proteins are also encoded in other groups of plasmids, such as IncA/C and IncP2, targeting them could be a valuable strategy in combating AMR infections caused by bacteria harboring different groups of AMR plasmids. Since the selected antigens are directly linked to AMR itself, the protective effect extends beyond specific microorganisms to include all those carrying the corresponding resistance plasmids.

Funder

Fundació la Marató de TV3

Ministerio de Economía y Competitividad

Ministerio de Ciencia e Innovación

Horizon 2020 Framework Programme

Publisher

eLife Sciences Publications, Ltd

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