cis-Acting Determinant Limiting Expression of Sphingomyelinase Gene sph2 in Leptospira interrogans, Identified with a

James Matsunaga1,2, David A Haake3,2,4,5

  • 1Research Service, VA Greater Los Angeles Healthcare System, Los Angeles, California, USA jamesm@ucla.edu.

Insights

Researchers developed a green fluorescent protein (GFP) reporter plasmid for studying gene expression in Leptospira interrogans. This tool identified a DNA element causing low expression of the sph2 gene in certain strains.

Area of Science:

  • Microbiology
  • Molecular Biology
  • Genetics

Background:

  • Leptospira interrogans strains exhibit differential expression of the osmotically inducible sphingomyelinase gene, sph2.
  • Understanding gene regulation in this pathogen is crucial for developing genetic tools.

Purpose of the Study:

  • To develop a novel green fluorescent protein (GFP) reporter plasmid for analyzing gene expression in Leptospira interrogans.
  • To investigate the molecular determinants of differential sph2 gene expression between L. interrogans serovar Lai and serovar Pomona strains.

Main Methods:

  • Constructed a GFP reporter plasmid for promoter-reporter gene fusions.
  • Fused sph2 promoters from L. interrogans Lai and Pomona strains to the gfp gene.
  • Assessed reporter gene expression under varying osmolarity conditions.
  • Manipulated upstream regulatory elements (17-bp element and insertion sequence-like element) in promoter constructs.

Main Results:

  • The GFP reporter plasmid successfully replicated in L. interrogans and reported promoter activity.
  • The Pomona sph2 promoter showed higher activity than the Lai sph2 promoter, consistent with native gene expression.
  • A 17-bp upstream element was identified as a negative regulator of basal sph2 expression in the Lai strain.
  • Deletion of this element increased reporter gene expression, while its insertion decreased expression.

Conclusions:

  • The developed GFP reporter plasmid is a valuable tool for studying gene expression in L. interrogans.
  • An upstream regulatory element significantly influences the differential expression of the sph2 gene.
  • This reporter system facilitates the discovery of molecular determinants governing gene expression in L. interrogans.

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