Human Papillomavirus (HPV) is the causal agent of cervical cancer, one of the most common causes of death for women. The major capsid L1 protein self-assembles in Virus Like Particles (VLPs), which are highly immunogenic and suitable for vaccine production. In this study, a plastid transformation approach was assessed in order to produce a plant-based HPV-16 L1 vaccine. Transplastomic plants were obtained after transformation with vectors carrying a chimeric gene encoding the L1 protein either as the native viral (L1v gene) or a synthetic sequence optimized for expression in plant plastids (L1pt gene) under control of plastid expression signals. The L1 mRNA was detected in plastids and the L1 antigen accumulated up to 1.5% total leaf proteins only when vectors included the 52-UTR and a short N-terminal coding segment (Downstream Box) of a plastid gene. The half-life of the engineered L1 protein, determined by pulse-chase experiments, is at least 8 h. Formation of immunogenic VLPs in chloroplasts was confirmed by capture ELISA assay using antibodies recognizing conformational epitopes and by electron microscopy.

Translational fusion of chloroplast-expressed human papillomavirus type 16 L1 capsid protein enhances antigen accumulation in transplastomic tobacco

Scotti N;Vitale A;De Stradis A;Cardi T
2008

Abstract

Human Papillomavirus (HPV) is the causal agent of cervical cancer, one of the most common causes of death for women. The major capsid L1 protein self-assembles in Virus Like Particles (VLPs), which are highly immunogenic and suitable for vaccine production. In this study, a plastid transformation approach was assessed in order to produce a plant-based HPV-16 L1 vaccine. Transplastomic plants were obtained after transformation with vectors carrying a chimeric gene encoding the L1 protein either as the native viral (L1v gene) or a synthetic sequence optimized for expression in plant plastids (L1pt gene) under control of plastid expression signals. The L1 mRNA was detected in plastids and the L1 antigen accumulated up to 1.5% total leaf proteins only when vectors included the 52-UTR and a short N-terminal coding segment (Downstream Box) of a plastid gene. The half-life of the engineered L1 protein, determined by pulse-chase experiments, is at least 8 h. Formation of immunogenic VLPs in chloroplasts was confirmed by capture ELISA assay using antibodies recognizing conformational epitopes and by electron microscopy.
2008
BIOLOGIA E BIOTECNOLOGIA AGRARIA
Istituto di Bioscienze e Biorisorse
VIROLOGIA VEGETALE
17
1091
1102
Sì, ma tipo non specificato
Plastid transformation
HPV16
L1
Plant vaccines
Tobacco
Nel nostro laboratorio siamo riusciti ad effettuare esperimenti di pulse-chase della proteina sintetizzata dal genoma plastidico utilizzando protoplasti isolati; abbiamo così determinato che la vita media di L1 nelle foglie di tabacco è superiore alle 8 ore, indicando una stabilità proteica relativamente elevata.
12
info:eu-repo/semantics/article
262
Lenzi, P; Scotti, N; Alagna, F; Tornesello, Ml; Pompa, A; Vitale, A; De Stradis, A; Monti, L; Grillo, S; Buonaguro, Fm; Maliga, P; Cardi, T
01 Contributo su Rivista::01.01 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/151911
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