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Total Protein Extraction and 2-D Gel Electrophoresis Methods for Burkholderia Species
Published on: October 15, 2013
Lack of cable pili expression by cblA-containing Burkholderia cepacia complex
Umadevi Sajjan1, Lixia Liu2, Annie Lu1
1Departments of Structural Biology and Biochemistry, Hospital for Sick Children, Toronto, Ontario, Canada1.
Abstract:
The Burkholderia cepacia complex consists of several closely related bacterial species (or genomovars) which although generally not pathogenic for healthy individuals, contribute significantly to morbidity and mortality among persons with cystic fibrosis (CF). Certain B. cepacia complex strains are more frequently recovered from CF sputum cultures than are others, and these typically reside in genomovar III. The ET12 clone is a genomovar III strain that predominates among CF patients in Canada and the United Kingdom and is characterized by distinctive cblA-encoded pili that have a cable-like morphology. In a previous survey of B. cepacia complex isolates recovered from 606 CF patients in the US, a single genomovar III ET12 isolate (isolate AU0007) was identified; several cblA-containing genomovar I isolates, however, were also detected. In the study reported here, analysis by PFGE revealed several distinct strain types among these genomovar I isolates, and sequence analysis of their cblA genes demonstrated 87.8-88.4% identity to the ET12 cblA sequence. Southern analysis indicated that the cblA variant from each genomovar I isolate resides on a 4 kbp EcoRI fragment, in contrast to ET12 isolates, in which cblA localizes to a 5 kbp EcoRI fragment. Western blot assay indicated expression of the 16 kDa major pilin subunit by ET12 isolates, including AU0007, but neither whole-cell nor surface-protein extracts of the genomovar I reacted. Electron microscopy revealed the complete absence of pili expression by the genomovar I isolates. In contrast to typical ET12 isolates, AU0007 appeared to be hyperpiliated with rigid pili that lacked the cable morphology and did not bind cytokeratin 13, which has been previously identified as the epithelial cell receptor for the ET12 cable-pili-associated adhesin.
Insights
The Burkholderia cepacia complex ET12 clone, common in cystic fibrosis (CF) patients, has pili distinct from genomovar I isolates. Genomovar I isolates lack pili expression and do not bind cytokeratin 13, unlike ET12 strains.
Area of Science:
- Microbiology
- Bacterial Pathogenesis
- Genetics
Background:
- The Burkholderia cepacia complex (BCC) is significant in cystic fibrosis (CF) morbidity and mortality.
- Genomovar III strains, including the ET12 clone, are prevalent in CF patients and possess cblA-encoded pili with cable-like morphology.
- Previous US CF patient surveys identified ET12 and cblA-containing genomovar I BCC isolates.
Purpose of the Study:
- To investigate the genetic and phenotypic differences between BCC genomovar I isolates and the ET12 clone.
- To characterize the cblA gene and pilus expression in these distinct BCC strains.
Main Methods:
- Pulsed-field gel electrophoresis (PFGE) for strain typing.
- DNA sequence analysis of cblA genes.
- Southern blot analysis for cblA localization.
- Western blot assay for pilin subunit expression.
- Electron microscopy for pilus visualization.
Main Results:
- PFGE revealed distinct strain types within genomovar I isolates.
- Genomovar I cblA sequences showed 87.8-88.4% identity to ET12 cblA.
- cblA in genomovar I localized to a 4 kbp EcoRI fragment, versus 5 kbp in ET12.
- Genomovar I isolates lacked pilin expression and pili, unlike ET12 strains.
- AU0007 (ET12 isolate) was hyperpiliated with rigid pili, lacking cable morphology and cytokeratin 13 binding.
Conclusions:
- Genomovar I BCC isolates possess distinct cblA variants and lack pilus expression, differentiating them from the ET12 clone.
- The ET12 clone AU0007 exhibits atypical hyperpiliation and altered pilus characteristics.
- These findings highlight significant heterogeneity within BCC strains relevant to CF infections.

