bioRxiv Science⌕ Search

Biology subjects

Peeters, A. I.

Publications and source records attributed to Peeters, A. I..

2 recordsLinked to original sources

Development and characterisation of a promoter library for Sulfolobus acidocaldarius

The hyperthermoacidophilic archaeon Sulfolobus acidocaldarius is a promising production host for industrial biotechnology applications due to its ability to thrive in extreme conditions. However, the lack of well-characterised genetic parts and tools, particularly promoters, limits its potential for metabolic engineering. In this study, we developed the first promoter library for S. acidocaldarius by randomising specific regions of the core promoter sequence of PSaci 2137, a promoter known to function in both S. acidocaldarius and Escherichia coli. The library was initially screened in E. coli using mKate2, a red fluorescent reporter protein, and seven promoters were selected for characterisation in S. acidocaldarius using the thermostable {beta}-galactosidase reporter LacS. The resulting promoter collection exhibited a 5-fold range of expression levels in S. acidocaldarius, spanning from low to high constitutive expression when compared to S. acidocaldarius promoters Psac7d and PmalE. This study demonstrates a successful workflow for generating and characterising S. acidocaldarius promoters, providing a valuable toolkit for fine-tuning gene expression and optimising metabolic pathways in this extremophilic archaeon. The design principles established here can be extended to other archaeal systems with similar promoter architectures.

synthetic biology↗

Effects of genomic location on ectopic integration and gene expression of a reporter gene cassette in Sulfolobus acidocaldarius

In eukaryotes and bacteria, it is well-established that the genomic location of ectopic gene integration influences the expression level due to replication-associated gene dosage effects as well as effects mediated by chromatin organization. In contrast, in archaea, the impact of genomic location on gene expression remained unexplored. Here, we investigated this impact in the model archaeon Sulfolobus acidocaldarius, a crenarchaeal species that has a chromatin architecture with mixed eukaryotic-like and bacterial-like features. We aimed to integrate a standardized {beta}-galactosidase (lacS) reporter cassette into diverse loci in the genome of S. acidocaldarius SK-1 for a comparative analysis. Nine integration mutant strains were successfully obtained, for which qRT-PCR analysis and lacS reporter gene assays revealed significant variation in transcriptional and translational expression of the reporter, respectively, demonstrating that genomic location strongly influences gene expression in S. acidocaldarius. However, variability in transcription levels and its regulation was shown to be primarily driven by transcriptional activity of neighboring genes, due to the high coding density in the S. acidocaldarius genome as well as a lack of insulator elements. Interestingly, translational activity exhibited a more apparent correlation with the distance to the closest origin of replication (R2 = 0.432) as compared to transcriptional activity (R2 = 0.026). In conclusion, this study not only provides insights into genome context effects, but also provides inspiration for the future design of genomic knock-in constructions in S. acidocaldarius.

microbiology↗