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Vaccine . Secretory expression of tetrameric neuraminidase enhanced by signal peptide optimization elicits robust immunity against influenza infection

tetano

Editor, Senior Moderator
Vaccine

. 2026 Sep 5:92:129118.
doi: 10.1016/j.vaccine.2026.129118. Online ahead of print.

Secretory expression of tetrameric neuraminidase enhanced by signal peptide optimization elicits robust immunity against influenza infection in mice​


Lisha Deng 1 , Xianmiao Ye 1 , Xin Chen 1 , Xinru Hu 1 , Xinyu Zhang 1 , Zirong Han 2 , Caijun Sun 3

Affiliations


Abstract​


Neuraminidase (NA), a key surface glycoprotein of influenza viruses, represents a more conserved antigenic target than hemagglutinin (HA) and has attracted interest as a potential target for vaccines with broader protective capacity. Nevertheless, the inefficient secretory production of tetrameric NA that maintain tetramer-like structural features remains challenging.Here, we developed an optimized signal peptide, opt-sp, by introducing valine and asparagine residues at the N-terminus of the Gaussia luciferase signal peptide (Gluc-sp) and incorporating a measles virus phosphoprotein-derived tetramerization domain. In a systematic comparison with three commonly used signal peptides, including tissue plasminogen activator (tPA), immunoglobulin G signal peptide (IgG-sp), and Gluc-sp, opt-sp was associated with increased relative secretion of NA protein under the tested expression conditions. Native PAGE analysis further suggested the presence of tetramer-like NA species. In mice,a DNA vaccine encoding opt-sp-fused NA elicited substantially stronger NA-specific humoral and cellular immune responses than constructs bearing conventional signal peptides and provided improved protection against homologous A/California/04/2009 (H1N1) challenge. These findings identify opt-sp as a promising signal peptide candidate for improving recombinant NA secretion and support further evaluation of this strategy for NA-based influenza vaccine development, including future studies of heterologous protection.

Keywords: Influenza; Influenza vaccines; Neuraminidase; Signal peptide.
 
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