Francisella tularensis Schu S4 O-Antigen and Capsule Biosynthesis Gene Mutants Induce Early Cell Death in Human Macrophages

SR Lindemann, K Peng, ME Long, JR Hunt… - Infection and …, 2011 - Am Soc Microbiol
SR Lindemann, K Peng, ME Long, JR Hunt, MA Apicella, DM Monack, LAH Allen, BD Jones
Infection and immunity, 2011Am Soc Microbiol
Francisella tularensis is capable of rampant intracellular growth and causes a potentially
fatal disease in humans. Whereas many mutational studies have been performed with
avirulent strains of Francisella, relatively little has been done with strains that cause human
disease. We generated a near-saturating transposon library in the virulent strain Schu S4,
which was subjected to high-throughput screening by transposon site hybridization through
primary human macrophages, negatively selecting 202 genes. Of special note were genes …
Abstract
Francisella tularensis is capable of rampant intracellular growth and causes a potentially fatal disease in humans. Whereas many mutational studies have been performed with avirulent strains of Francisella, relatively little has been done with strains that cause human disease. We generated a near-saturating transposon library in the virulent strain Schu S4, which was subjected to high-throughput screening by transposon site hybridization through primary human macrophages, negatively selecting 202 genes. Of special note were genes in a locus of the Francisella chromosome, FTT1236, FTT1237, and FTT1238. Mutants with mutations in these genes demonstrated significant sensitivity to complement-mediated lysis compared with wild-type Schu S4 and exhibited marked defects in O-antigen and capsular polysaccharide biosynthesis. In the absence of complement, these mutants were phagocytosed more efficiently by macrophages than wild-type Schu S4 and were capable of phagosomal escape but exhibited reduced intracellular growth. Microscopic and quantitative analyses of macrophages infected with mutant bacteria revealed that these macrophages exhibited signs of cell death much earlier than those infected with Schu S4. These data suggest that FTT1236, FTT1237, and FTT1238 are important for polysaccharide biosynthesis and that the Francisella O antigen, capsule, or both are important for avoiding the early induction of macrophage death and the destruction of the replicative niche.
American Society for Microbiology
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