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Gene silencing based on RNA-guided catalytically inactive Cas9 (dCas9): a new tool for genetic engineering in Leptospira

Authors :
Silvio Arruda Vasconcellos
Marcos Bryan Heinemann
Ana L. T. O. Nascimento
Luis G. V. Fernandes
Mathieu Picardeau
Linda P. Guaman
Instituto Butantan [São Paulo]
Universidad Tecnologica Equinoccial [Quito, Ecuador] (UTE)
Universidade de São Paulo (USP)
Biologie des Spirochètes / Biology of Spirochetes
Institut Pasteur [Paris]
The following Brazilian agencies: FAPESP (grant 2014/50981-0), CNPq (grants 301229/2017-1 and 441449/2014-0) and Fundacao Butantan, financially supported this work
LGVF has fellowship from FAPESP (2017/06731-8). This work was also supported by the Institut Pasteur, Paris, France. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.
We are deeply in debt to Dr. Albert Leyva for English editing this manuscript.
Universidade de São Paulo = University of São Paulo (USP)
Institut Pasteur [Paris] (IP)
Source :
Scientific Reports, Scientific Reports, Nature Publishing Group, 2019, 9 (1), pp.1839. ⟨10.1038/s41598-018-37949-x⟩, Scientific Reports, 2019, 9 (1), pp.1839. ⟨10.1038/s41598-018-37949-x⟩, Repositório Institucional da USP (Biblioteca Digital da Produção Intelectual), Universidade de São Paulo (USP), instacron:USP, Scientific Reports, Vol 9, Iss 1, Pp 1-14 (2019)
Publication Year :
2019
Publisher :
HAL CCSD, 2019.

Abstract

Leptospirosis is a worldwide zoonosis caused by pathogenic bacteria of the genus Leptospira, which also includes free-living saprophyte strains. Many aspects of leptospiral basic biology and virulence mechanisms remain unexplored mainly due to the lack of effective genetic tools available for these bacteria. Recently, the type II CRISPR/Cas system from Streptococcus pyogenes has been widely used as an efficient genome engineering tool in bacteria by inducing double-strand breaks (DSBs) in the desired genomic targets caused by an RNA-guided DNA endonuclease called Cas9, and the DSB repair associated machinery. In the present work, plasmids expressing heterologous S. pyogenes Cas9 in L. biflexa cells were generated, and the enzyme could be expressed with no apparent toxicity to leptospiral cells. However, L. biflexa cells were unable to repair RNA-guided Cas9-induced DSBs. Thus, we used a catalytically dead Cas9 (dCas9) to obtain gene silencing rather than disruption, in a strategy called CRISPR interference (CRISPRi). We demonstrated complete gene silencing in L. biflexa cells when both dCas9 and single-guide RNA (sgRNA) targeting the coding strand of the β-galactosidase gene were expressed simultaneously. Furthermore, when the system was applied for silencing the dnaK gene, no colonies were recovered, indicating that DnaK protein is essential in Leptospira. In addition, flagellar motor switch FliG gene silencing resulted in reduced bacterial motility. To the best of our knowledge, this is the first work applying the CRISPRi system in Leptospira and spirochetes in general, expanding the tools available for understanding leptospiral biology.

Details

Language :
English
ISSN :
20452322
Database :
OpenAIRE
Journal :
Scientific Reports, Scientific Reports, Nature Publishing Group, 2019, 9 (1), pp.1839. ⟨10.1038/s41598-018-37949-x⟩, Scientific Reports, 2019, 9 (1), pp.1839. ⟨10.1038/s41598-018-37949-x⟩, Repositório Institucional da USP (Biblioteca Digital da Produção Intelectual), Universidade de São Paulo (USP), instacron:USP, Scientific Reports, Vol 9, Iss 1, Pp 1-14 (2019)
Accession number :
edsair.doi.dedup.....7737e7c2c597be1b63cef125695e6e61