Evidence map›Paper›PMID 41928234›Full record

ArticleMicrobial cell factories2026

Transcriptomics analysis identifies folding and secretion related genes for improving monoclonal antibody production in Thermothelomyces heterothallica C1.

Mari Mäkinen, Antti Aalto, Tiina Pakula, Marilyn G Wiebe, Anne Huuskonen, Marika Vitikainen, Mari Valkonen, Sami Havukainen, Ellinor Englund, Veera Korja and 4 more

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Article in Microbial cell factories, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

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3 · Its place in the literature

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4 · The record

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5 · Who and what money

Authors and funding

14 authors.

Mari MäkinenVTT Technical Research Centre of Finland Ltd., P.O. Box 1000, Espoo, 02044 VTT, Finland. mari.makinen@vtt.fi.
Antti AaltoVTT Technical Research Centre of Finland Ltd., P.O. Box 1000, Espoo, 02044 VTT, Finland.
Tiina PakulaVTT Technical Research Centre of Finland Ltd., P.O. Box 1000, Espoo, 02044 VTT, Finland.
Marilyn G WiebeVTT Technical Research Centre of Finland Ltd., P.O. Box 1000, Espoo, 02044 VTT, Finland.
Anne HuuskonenVTT Technical Research Centre of Finland Ltd., P.O. Box 1000, Espoo, 02044 VTT, Finland.
Marika VitikainenVTT Technical Research Centre of Finland Ltd., P.O. Box 1000, Espoo, 02044 VTT, Finland.
Mari ValkonenVTT Technical Research Centre of Finland Ltd., P.O. Box 1000, Espoo, 02044 VTT, Finland.
Sami HavukainenVTT Technical Research Centre of Finland Ltd., P.O. Box 1000, Espoo, 02044 VTT, Finland.
Ellinor EnglundVTT Technical Research Centre of Finland Ltd., P.O. Box 1000, Espoo, 02044 VTT, Finland.
Veera KorjaVTT Technical Research Centre of Finland Ltd., P.O. Box 1000, Espoo, 02044 VTT, Finland.
Mark EmalfarbDyadic Applied BioSolutions, 1044 North U.S. Highway One, Suite 201, Jupiter, FL, 33477- 5094, USA.
Noelia Valbuena CrespoDyadic Applied BioSolutions, 1044 North U.S. Highway One, Suite 201, Jupiter, FL, 33477- 5094, USA.
Ronen TcheletDyadic Applied BioSolutions, 1044 North U.S. Highway One, Suite 201, Jupiter, FL, 33477- 5094, USA.
Markku SaloheimoVTT Technical Research Centre of Finland Ltd., P.O. Box 1000, Espoo, 02044 VTT, Finland.

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

backgroundThe filamentous fungus Thermothelomyces heterothallica C1 has been developed into a highly productive protein production system for heterologous proteins like antibodies and vaccine candidates. While it is capable of secreting over 120 g/l of its native enzymes, monoclonal antibodies (mAbs) have been produced at titers exceeding 20 g/l, and strains engineered to produce human-type N-glycan structures have been developed. However, significant variability in mAb productivity and reduced production levels in glycoengineered strains limit the use of C1 as a widespread production host in the pharmaceutical industry. To address these issues, transcriptome analysis was conducted on strains producing five different mAbs with varying production efficiencies, as well as on mAb-producing strains with native and glycoengineered N-glycans. Genes related to protein folding and secretion, which are regulated in response to mAb production and glycoengineering, were over-expressed in a glycoengineered mAb producing C1 strain. In addition, genes identified based on previously described functions in the secretory pathway, including counterparts of human origin, were included in the study.

resultsTranscriptome analysis revealed that the mAb heavy and light chains were among the most abundantly expressed transcripts, indicating that production bottlenecks occur after transcription. Genes associated with protein folding, quality control, glycosylation, and transport within the secretory pathway were upregulated in the mAb-producing strains. This upregulation was more pronounced in strains with low mAb yields and in glycoengineered strains. The over-expression of 10 genes (bet1, dnaj-type gene, dpm1, ero1, erv46, human calreticulin, human cypb, human mzb1, pmr1, and UDP-galactose transporter), each playing distinct roles in the secretory pathway, enhanced mAb production in glycoengineered C1 strains from 1.5- to 2.5-fold.

conclusionsThrough a comprehensive analysis of transcriptome data from C1 strains producing various monoclonal antibodies (mAbs) and an extensive literature search, several factors related to protein folding and secretion were identified as potential targets for enhancing mAb production. The over-expression of some of these genes in glycoengineered C1 strains led to improvement in mAb production, with some genes enhancing mAb yields by 2.5-fold.

Indexed as

Antibodies, MonoclonalGene Expression ProfilingSaccharomycetalesHumansPolysaccharidesProtein FoldingTranscriptomeAntibodies, MonoclonalPolysaccharidesGlycoengineeringMonoclonal antibody productionProtein foldingSecretion stressSecretory pathwayThermothelomyces heterothallica

Identifiers

PMID41928234
PMCPMC13170295

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.