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February 11, 2026Molecular Biotechnology0 citationsOpen Access

Recombinant Production and Immunological Evaluation of Tobamovirus fructirugosum (ToBRFV) Capsid and Movement Proteins

LNLeandro Alberto Núñez-MuñozBCBerenice Calderón-PérezRRRoberto Ruíz‐Medrano

Key Points

  • The aim is to produce recombinant capsid and movement proteins of ToBRFV for use as antigens in detection assays.
  • Recombinant production of capsid and movement proteins in Escherichia coli BL21(DE3)
  • Purification of proteins under native and denaturing conditions
  • Validation of proteins through SDS-PAGE and immunoblotting
  • In silico analysis for B- and T-cell epitopes
  • Immunization of mice for assessing immune response.
  • CP exhibited partial solubility, facilitating purification.
  • MP accumulated in inclusion bodies, requiring denaturing purification.
  • Immunization induced IgG responses, with MP showing a higher response.
  • CP demonstrated superior ELISA reactivity against crude extracts from infected plants.

Abstract

Tomato brown rugose fruit virus (Tobamovirus fructirugosum, ToBRFV) is an emerging tobamovirus threatening tomato and pepper production worldwide. Accurate and scalable detection methods are essential to limit its agricultural impact. In this study, we report the recombinant production and characterization of ToBRFV capsid (CPToBRFV) and movement (MPToBRFV) proteins as candidate antigens for serological detection. Both coding sequences were amplified from infected tomato tissue and heterologously expressed in Escherichia coli BL21(DE3). CPToBRFV exhibited partial solubility under low-temperature induction, allowing purification under native conditions, whereas MPToBRFV accumulated in inclusion bodies and was purified under denaturing conditions. Purified proteins were validated by SDS-PAGE and immunoblotting. In silico analyses indicated the presence of multiple B- and T-cell epitopes in both proteins. Immunization of mice with purified proteins elicited IgG responses. Interestingly, MPToBRFV induced a higher humoral response, but antisera raised against CPToBRFV showed superior ELISA reactivity with crude extracts from ToBRFV-infected plants. Together, these results support CPToBRFV as a robust antigen for serological detection and provide a reproducible framework for the development of recombinant protein-based diagnostics for ToBRFV.

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Cite This Study

Núñez-Muñoz et al. (2026) studied this question.

synapsesocial.com/papers/698c1bef267fb587c655dff4https://doi.org/10.1007/s12033-026-01556-3
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