» Articles » PMID: 10861909

A Family of Multifunctional Thiamine-repressible Expression Vectors for Fission Yeast

Overview
Journal Yeast
Publisher Wiley
Specialty Microbiology
Date 2000 Jun 22
PMID 10861909
Citations 54
Authors
Affiliations
Soon will be listed here.
Abstract

A series of thiamine-repressible shuttle vectors has been constructed to allow a more efficient DNA manipulation in Schizosaccharomyces pombe. These high-copy-number vectors with regulatable expression (pJR) are based on the backbone of the pREP-3X, pREP-41X and pREP-81X plasmids. The pJR vectors are all uniform in structure, containing: (a) sequences for replication (ori) and selection (AmpR) in Escherichia coli; (b) the f1 ori sequence of the phage f1 for packaging of ssDNA, making them suitable for site-directed mutagenesis; and (c) the ars1 sequence for replication in S. pombe. The pJR vectors differ among them in: (a) the selectable marker (Saccharomyces cerevisiae LEU 2 gene, which complements S. pombe leu1- gene and S. pombe ura4+ and his3+ genes); (b) the thiamine-repressible nmt1 promoter (3X, 41X and 81X with extremely high, moderate or low transcription efficiency, respectively); and (c) the multiple cloning site (two multiple cloning sites, with 12 restriction sites each). The expression level of the pJR vectors has been analysed using the beta-galactosidase gene as reporter. Three levels of expression for each nmt1 promoter version, with any selectable marker and for either repressed or induced conditions, have been found. The expression is dependent on the distance to the initiation codon, varying from 0.001 to 15 times the activity characterized for the pREP plasmids. Also, the gene expression has been found to be extremely sensitive to the nucleotide sequence prior to the initiation codon, being up to 50-fold higher with an A/T sequence than with a G/C sequence. Finally, the beta-galactosidase mRNA levels were found to be similar in each nmt1 series, suggesting a translational effect on gene expression. As a result, any of these 18 new vectors allow performing gene expression in fission yeast, as well as a more versatile cloning, sequencing and mutagenesis, directly in the plasmid without the need for subcloning into intermediary vectors.

Citing Articles

LC-MS/MS quantification of bacterial and fungal signal peptides via direct injection: a case study of cross-kingdom communication.

Pohl C, Schuster L, Rau C, Gutbier U, Beil S, Bornick H Anal Bioanal Chem. 2025; 417(8):1677-1689.

PMID: 39903273 PMC: 11876276. DOI: 10.1007/s00216-025-05767-6.


Ageing-associated long non-coding RNA extends lifespan and reduces translation in non-dividing cells.

Anver S, Sumit A, Sun X, Hatimy A, Thalassinos K, Marguerat S EMBO Rep. 2024; 25(11):4921-4949.

PMID: 39358553 PMC: 11549352. DOI: 10.1038/s44319-024-00265-9.


Characterization of a valproic acid-sensitive mutant allele of the Golgi GDP-mannose transmembrane transporter Vrg4 in .

Takasaki T, Yamada M, Ikeda H, Fang Y, Sugiura R MicroPubl Biol. 2024; 2024.

PMID: 39247787 PMC: 11380095. DOI: 10.17912/micropub.biology.001287.


Fission yeast Bgs1 glucan synthase participates in the control of growth polarity and membrane traffic.

Ramos M, Martin-Garcia R, Curto M, Gomez-Delgado L, Moreno M, Sato M iScience. 2024; 27(8):110477.

PMID: 39156640 PMC: 11326927. DOI: 10.1016/j.isci.2024.110477.


Use of the Saccharomycopsis schoenii MET17 promoter for regulated heterologous gene expression.

Rij M, Wendland J Curr Genet. 2024; 70(1):9.

PMID: 38951203 PMC: 11217035. DOI: 10.1007/s00294-024-01294-6.