» Articles » PMID: 19477196

New Yeast Recombineering Tools for Bacteria

Overview
Journal Plasmid
Date 2009 May 30
PMID 19477196
Citations 67
Authors
Affiliations
Soon will be listed here.
Abstract

Recombineering with Saccharomyces cerevisiae is a powerful methodology that can be used to clone multiple unmarked pieces of DNA to generate complex constructs with high efficiency. Here, we introduce two new tools that utilize the native recombination enzymes of S. cerevisiae to facilitate the manipulation of DNA. First, yeast recombineering was used to make directed nested deletions in a bacteria-yeast shuttle plasmid using only one or two single stranded oligomers, thus obviating the need for a PCR step. Second, we have generated several new shuttle vectors for yeast recombineering capable of replication in a wide variety of bacterial genera. As a demonstration of utility, some of the approaches and vectors generated in this study were used to make a pigP deletion mutation in the opportunistic pathogen Serratia marcescens.

Citing Articles

A rise in the frequency of mutant among keratitis isolates between 1993 and 2021.

Shanks R, Atta S, Stella N, Sundar-Raj C, Romanowski J, Grewal A Front Cell Infect Microbiol. 2023; 13:1286842.

PMID: 38029269 PMC: 10651084. DOI: 10.3389/fcimb.2023.1286842.


The pGinger Family of Expression Plasmids.

Pearson A, Thompson M, Kirkpatrick L, Ho C, Vuu K, Waldburger L Microbiol Spectr. 2023; 11(3):e0037323.

PMID: 37212656 PMC: 10269703. DOI: 10.1128/spectrum.00373-23.


Genetic Manipulation of Corynebacterium mastitidis to Better Understand the Ocular Microbiome.

Rigas Y, Treat B, Shane J, Shanks R, St Leger A Invest Ophthalmol Vis Sci. 2023; 64(2):19.

PMID: 36799874 PMC: 9942783. DOI: 10.1167/iovs.64.2.19.


A Functional Analysis of the Purine Salvage Pathway in Acetobacter fabarum.

Newell P, Preciado L, Murphy Jr C J Bacteriol. 2022; 204(7):e0004122.

PMID: 35695500 PMC: 9295547. DOI: 10.1128/jb.00041-22.


Nitrogen Metabolism in Pseudomonas putida: Functional Analysis Using Random Barcode Transposon Sequencing.

Schmidt M, Pearson A, Incha M, Thompson M, Baidoo E, Kakumanu R Appl Environ Microbiol. 2022; 88(7):e0243021.

PMID: 35285712 PMC: 9004399. DOI: 10.1128/aem.02430-21.


References
1.
Kalivoda E, Stella N, ODee D, Nau G, Shanks R . The cyclic AMP-dependent catabolite repression system of Serratia marcescens mediates biofilm formation through regulation of type 1 fimbriae. Appl Environ Microbiol. 2008; 74(11):3461-70. PMC: 2423026. DOI: 10.1128/AEM.02733-07. View

2.
Bertani G . Studies on lysogenesis. I. The mode of phage liberation by lysogenic Escherichia coli. J Bacteriol. 1951; 62(3):293-300. PMC: 386127. DOI: 10.1128/jb.62.3.293-300.1951. View

3.
Gaskill M, Khan S . Regulation of the enterotoxin B gene in Staphylococcus aureus. J Biol Chem. 1988; 263(13):6276-80. View

4.
Stavropoulos T, Strathdee C . Synergy between tetA and rpsL provides high-stringency positive and negative selection in bacterial artificial chromosome vectors. Genomics. 2001; 72(1):99-104. DOI: 10.1006/geno.2000.6481. View

5.
Churchward G, Belin D, Nagamine Y . A pSC101-derived plasmid which shows no sequence homology to other commonly used cloning vectors. Gene. 1984; 31(1-3):165-71. DOI: 10.1016/0378-1119(84)90207-5. View