Codon harmonization reduces amino acid misincorporation in bacterially expressed P. falciparum proteins and improves their immunogenicity.

Alpha-helical content Amino-acid misincorporation Codon-harmonization PfCelTOS Protein translation Secondary structure

Journal

AMB Express
ISSN: 2191-0855
Titre abrégé: AMB Express
Pays: Germany
ID NLM: 101561785

Informations de publication

Date de publication:
19 Oct 2019
Historique:
received: 17 09 2019
accepted: 01 10 2019
entrez: 21 10 2019
pubmed: 21 10 2019
medline: 21 10 2019
Statut: epublish

Résumé

Codon usage frequency influences protein structure and function. The frequency with which codons are used potentially impacts primary, secondary and tertiary protein structure. Poor expression, loss of function, insolubility, or truncation can result from species-specific differences in codon usage. "Codon harmonization" more closely aligns native codon usage frequencies with those of the expression host particularly within putative inter-domain segments where slower rates of translation may play a role in protein folding. Heterologous expression of Plasmodium falciparum genes in Escherichia coli has been a challenge due to their AT-rich codon bias and the highly repetitive DNA sequences. Here, codon harmonization was applied to the malarial antigen, CelTOS (Cell-traversal protein for ookinetes and sporozoites). CelTOS is a highly conserved P. falciparum protein involved in cellular traversal through mosquito and vertebrate host cells. It reversibly refolds after thermal denaturation making it a desirable malarial vaccine candidate. Protein expressed in E. coli from a codon harmonized sequence of P. falciparum CelTOS (CH-PfCelTOS) was compared with protein expressed from the native codon sequence (N-PfCelTOS) to assess the impact of codon usage on protein expression levels, solubility, yield, stability, structural integrity, recognition with CelTOS-specific mAbs and immunogenicity in mice. While the translated proteins were expected to be identical, the translated products produced from the codon-harmonized sequence differed in helical content and showed a smaller distribution of polypeptides in mass spectra indicating lower heterogeneity of the codon harmonized version and fewer amino acid misincorporations. Substitutions of hydrophobic-to-hydrophobic amino acid were observed more commonly than any other. CH-PfCelTOS induced significantly higher antibody levels compared with N-PfCelTOS; however, no significant differences in either IFN-γ or IL-4 cellular responses were detected between the two antigens.

Identifiants

pubmed: 31630257
doi: 10.1186/s13568-019-0890-6
pii: 10.1186/s13568-019-0890-6
pmc: PMC6800875
doi:

Types de publication

Journal Article

Langues

eng

Pagination

167

Références

FEBS Lett. 1999 Dec 3;462(3):387-91
pubmed: 10622731
Infect Immun. 2017 Jan 26;85(2):
pubmed: 27895131
Biotechnol J. 2012 Jan;7(1):133-47
pubmed: 22076863
PLoS One. 2008 May 14;3(5):e2189
pubmed: 18478103
Science. 2007 Jan 26;315(5811):525-8
pubmed: 17185560
Infect Immun. 2005 Jan;73(1):287-97
pubmed: 15618165
Protein Sci. 1996 Oct;5(10):1973-83
pubmed: 8897597
Expert Opin Biol Ther. 2008 Dec;8(12):1873-84
pubmed: 18990075
Nat Rev Genet. 2009 Oct;10(10):715-24
pubmed: 19763154
Trends Biochem Sci. 2009 Jan;34(1):16-24
pubmed: 18996013
Proc Natl Acad Sci U S A. 2017 Oct 24;114(43):11434-11439
pubmed: 29073068
J Mol Biol. 1998 Sep 11;282(1):13-24
pubmed: 9733638
Cell. 2015 Nov 19;163(5):1095-1107
pubmed: 26553503
Anal Chem. 2009 Nov 15;81(22):9282-90
pubmed: 19852494
Int Immunol. 2005 Apr;17(4):365-72
pubmed: 15724064
Bioinformatics. 2017 Oct 1;33(19):3098-3100
pubmed: 28575391
Elife. 2016 Dec 01;5:
pubmed: 27906127
Mol Gen Genet. 1982;188(2):169-72
pubmed: 6759868
Biochem J. 1963 Oct;89:82-92
pubmed: 14097371
Int Arch Allergy Immunol. 2016;170(4):211-233
pubmed: 27642756
Eur J Biochem. 1987 Nov 16;169(1):59-64
pubmed: 3315664
Vaccine. 2011 Aug 11;29(35):5940-9
pubmed: 21722682
Mol Microbiol. 2006 Mar;59(5):1369-79
pubmed: 16468982
RNA. 2007 Jan;13(1):87-96
pubmed: 17095544
Nat Commun. 2016 Feb 18;7:10341
pubmed: 26887592
Nature. 2006 Sep 7;443(7107):50-5
pubmed: 16906134
Cell. 2008 Jul 25;134(2):341-52
pubmed: 18662548
EMBO J. 1983;2(8):1351-6
pubmed: 10872330
Biochemistry. 2013 Nov 12;52(45):8165-76
pubmed: 24128183
Cell. 1977 Jan;10(1):131-7
pubmed: 138485
PLoS One. 2010 Aug 19;5(8):e12294
pubmed: 20808868
Nat Struct Mol Biol. 2009 Jun;16(6):589-97
pubmed: 19491936
RNA. 2014 Jan;20(1):9-15
pubmed: 24249223
Biochem J. 1972 Aug;128(5):1353-6
pubmed: 4643706

Auteurs

Neeraja Punde (N)

Malaria Biologics Branch, Walter Reed Army Institute of Research, Silver Spring, MD, 20910, USA.
The Geneva Foundation, 917 Pacific Avenue, Tacoma, WA, 98402, USA.

Jennifer Kooken (J)

Malaria Biologics Branch, Walter Reed Army Institute of Research, Silver Spring, MD, 20910, USA.

Dagmar Leary (D)

Naval Research Laboratories, 4555 Overlook Ave, Washington, DC, 20375, USA.

Patricia M Legler (PM)

Naval Research Laboratories, 4555 Overlook Ave, Washington, DC, 20375, USA.

Evelina Angov (E)

Malaria Biologics Branch, Walter Reed Army Institute of Research, Silver Spring, MD, 20910, USA. evelina.angov.civ@mail.mil.

Classifications MeSH