Challenges and strategies in the soluble expression of CTA1-(S14P5)4-DD and CTA1-(S21P2)4-DD fusion proteins as candidates for COVID-19 intranasal vaccines

Amer, Haitham Mohamed and Tarigan, Simson and Sekarmila, Gita and Apas and Sumarningsih and Tarigan, Ronald and Putri, Riyandini and Setyawati, Damai Ria (2024) Challenges and strategies in the soluble expression of CTA1-(S14P5)4-DD and CTA1-(S21P2)4-DD fusion proteins as candidates for COVID-19 intranasal vaccines. PLOS ONE, 19 (12). e0306153. ISSN 1932-6203

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Abstract

Developing intranasal vaccines against pandemics and devastating airborne infectious dis eases is imperative. The superiority of intranasal vaccines over injectable systemic vaccines is evident, but developing effective intranasal vaccines presents significant challenges. Fus ing a protein antigen with the catalytic domain of cholera toxin (CTA1) and the two-domain D of staphylococcal protein A (DD) has significant potential for intranasal vaccines. In this study, we constructed two fusion proteins containing CTA1, tandem repeat linear epitopes of the SARS-CoV-2 spike protein (S14P5 or S21P2), and DD. Structural predictions indi cated that each component of the fusion proteins was compatible with its origin. In silico analyses predicted high solubility for both fusion proteins when overexpressed in Escheri chia coli. However, contrary to these predictions, the constructs exhibited limited solubility. Lowering the cultivation temperature from 37˚C to 18˚C did not improve solubility. Inducing expression with IPTG at the early log phase significantly increased soluble CTA1-(S21P2)4 DD but notCTA1-(S14P5)4-DD. Adding non-denaturing detergents (Nonidet P40, Triton X100, or Tween20)to theextraction buffer significantly enhanced solubility. Despite this, purification experiments yielded low amounts, only 1–2 mg/L of culture, due to substantial losses during the purification stages. These findings highlight the challenges and potential strategies for optimizing soluble expression of CTA1-DD fusion proteins for intranasal vaccines

Item Type: Article
Uncontrolled Keywords: Intranasal vaccines; COVID-19 vaccines; Fusion proteins Escherichia coli; Protein engineering
Subjects: Medicine & Biology
Depositing User: Mrs Titi Herawati
Date Deposited: 07 Oct 2026 02:45
Last Modified: 07 Oct 2026 02:45
URI: https://karya.brin.go.id/id/eprint/60777

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