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In Vitro Assay of Bacterial Adhesion onto Mammalian Epithelial Cells
Published on: May 16, 2011
InvL, an Invasin-Like Adhesin, Is a Type II Secretion System Substrate Required for Acinetobacter baumannii
Clay D Jackson-Litteken1, Gisela Di Venanzio1, Nguyen-Hung Le1
1Department of Molecular Microbiology, Washington University School of Medicine, St. Louis, Missouri, USA.
Abstract:
Acinetobacter baumannii is an opportunistic pathogen of growing concern, as isolates are commonly multidrug resistant. While A. baumannii is most frequently associated with pulmonary infections, a significant proportion of clinical isolates come from urinary sources, highlighting its uropathogenic potential. The type II secretion system (T2SS) of commonly used model Acinetobacter strains is important for virulence in various animal models, but the potential role of the T2SS in urinary tract infection (UTI) remains unknown. Here, we used a catheter-associated UTI (CAUTI) model to demonstrate that a modern urinary isolate, UPAB1, requires the T2SS for full virulence. A proteomic screen to identify putative UPAB1 T2SS effectors revealed an uncharacterized lipoprotein with structural similarity to the intimin-invasin family, which serve as type V secretion system (T5SS) adhesins required for the pathogenesis of several bacteria. This protein, designated InvL, lacked the β-barrel domain associated with T5SSs but was confirmed to require the T2SS for both surface localization and secretion. This makes InvL the first identified T2SS effector belonging to the intimin-invasin family. InvL was confirmed to be an adhesin, as the protein bound to extracellular matrix components and mediated adhesion to urinary tract cell lines in vitro. Additionally, the invL mutant was attenuated in the CAUTI model, indicating a role in Acinetobacter uropathogenesis. Finally, bioinformatic analyses revealed that InvL is present in nearly all clinical isolates belonging to international clone 2, a lineage of significant clinical importance. In all, we conclude that the T2SS substrate InvL is an adhesin required for A. baumannii uropathogenesis. IMPORTANCE While pathogenic Acinetobacter can cause various infections, we recently found that 20% of clinical isolates come from urinary sources. Despite the clinical relevance of Acinetobacter as a uropathogen, few virulence factors involved in urinary tract colonization have been defined. Here, we identify a novel type II secretion system effector, InvL, which is required for full uropathogenesis by a modern urinary isolate. Although InvL has predicted structural similarity to the intimin-invasin family of autotransporter adhesins, InvL is predicted to be anchored to the membrane as a lipoprotein. Similar to other invasin homologs, however, we demonstrate that InvL is a bona fide adhesin capable of binding extracellular matrix components and mediating adhesion to urinary tract cell lines. In all, this work establishes InvL as an adhesin important for Acinetobacter's urinary tract virulence and represents the first report of a type II secretion system effector belonging to the intimin-invasin family.
Insights
Acinetobacter baumannii uses the type II secretion system (T2SS) to cause urinary tract infections. Researchers identified a novel T2SS effector, InvL, which acts as an adhesin crucial for virulence in a catheter-associated UTI model.
Area of Science:
- Microbiology
- Infectious Diseases
- Bacterial Pathogenesis
Background:
- Acinetobacter baumannii is a multidrug-resistant opportunistic pathogen.
- While known for pulmonary infections, it also causes urinary tract infections (UTIs).
- The role of the type II secretion system (T2SS) in A. baumannii UTIs is largely unknown.
Purpose of the Study:
- Investigate the role of the T2SS in A. baumannii virulence in a catheter-associated UTI (CAUTI) model.
- Identify novel T2SS effectors involved in urinary tract pathogenesis.
- Characterize the function and prevalence of identified effectors.
Main Methods:
- Utilized a CAUTI mouse model with a clinical A. baumannii urinary isolate (UPAB1).
- Performed proteomic screening to identify T2SS effector candidates.
- Confirmed effector secretion, surface localization, and function using genetic mutants and in vitro assays.
- Conducted bioinformatic analysis to assess effector distribution in clinical isolates.
Main Results:
- The T2SS is essential for full virulence of A. baumannii UPAB1 in the CAUTI model.
- Identified a novel T2SS effector, InvL, structurally similar to intimin-invasin adhesins.
- InvL functions as an adhesin, binding extracellular matrix and mediating bacterial adhesion to urinary tract cells.
- InvL is present in most clinical isolates of the significant International Clone 2 lineage.
Conclusions:
- The T2SS substrate InvL is a novel adhesin critical for A. baumannii uropathogenesis.
- InvL represents the first identified T2SS effector from the intimin-invasin family.
- InvL is a potential therapeutic target for combating A. baumannii UTIs.
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