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Nucleic acid sequence based amplification (NASBA) of Chlamydia pneumoniae major outer membrane protein (ompA) mRNA
1The Father Sean O- Sullivan Research Center, St. Joseph-s Hospital, McMaster University, Hamilton, L8N 4A6, Canada. coombebk@fhs.mcmaster.ca
Abstract:
Chlamydia pneumoniae has been associated with chronic conditions such as atherosclerosis and coronary heart disease but the precise role of this intracellular bacteria in the pathogenesis of these diseases is not well defined. Several techniques have been developed for detection of C. pneumoniae in atheromatous lesions, however it remains unclear whether persistent forms of the organism and/or actively replicating bacteria contribute to associated pathology. The aim of this study was to utilize nucleic acid sequence based amplification (NASBA) technology together with a highly sensitive aequorin bioluminescent hybridization assay for the detection of C. pneumoniae ompA mRNA transcripts. A NASBA targeting the ompA gene of C. pneumoniae was developed, and the sensitivity was evaluated using both C. pneumoniae ompA RNA generated in vitro, and purified C. pneumoniae inclusion forming units (IFU). C. pneumoniae NASBA was capable of detecting between 100 and 1000 ompA RNA molecules and could detect 0.2 IFU of C. pneumoniae using the aequorin bioluminescent assay. The sensitivity of the bioluminescent assay was at least 10-fold higher than Northern blot detection. The linearity of NASBA amplification was assessed in time-course amplification experiments with different input numbers of RNA molecules. When NASBA products were analyzed during the linear phase of amplification, the dynamic range of bioluminescent detection extended over 8-log units of input RNA copy number. NASBA amplification coupled with bioluminescent detection may prove to be a useful molecular tool for the detection, quantitation and analysis of differentially expressed chlamydial genes during various stages of infection and disease pathology or for other mRNAs of interest in different disease processes.
Insights
This study developed a sensitive method using nucleic acid sequence based amplification (NASBA) to detect Chlamydia pneumoniae mRNA. This advancement aids in understanding the bacteria
Area of Science:
- Microbiology
- Molecular Biology
- Pathogenesis
Background:
- Chlamydia pneumoniae is linked to atherosclerosis and coronary heart disease.
- Its exact role in disease development remains unclear.
- Detecting active C. pneumoniae in lesions is challenging.
Purpose of the Study:
- To develop a sensitive method for detecting C. pneumoniae ompA mRNA transcripts.
- To utilize nucleic acid sequence based amplification (NASBA) and aequorin bioluminescent hybridization.
- To assess the bacteria's role in disease pathogenesis.
Main Methods:
- Developed a NASBA targeting the C. pneumoniae ompA gene.
- Evaluated sensitivity using in vitro RNA and C. pneumoniae inclusion forming units (IFU).
- Compared bioluminescent assay sensitivity to Northern blot.
Main Results:
- NASBA detected 100-1000 ompA RNA molecules and 0.2 IFU of C. pneumoniae.
- Bioluminescent assay was 10-fold more sensitive than Northern blot.
- Linear amplification showed an 8-log dynamic range for RNA detection.
Conclusions:
- NASBA with bioluminescent detection is a sensitive tool for C. pneumoniae mRNA.
- This method can quantify gene expression during infection and disease.
- It aids in analyzing chlamydial gene roles in pathology.