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A Fast and Reliable Pipeline for Bacterial Transcriptome Analysis Case study: Serine-dependent Gene Regulation in Streptococcus pneumoniae
Published on: April 25, 2015
Discovery of Unannotated Small Open Reading Frames in Streptococcus pneumoniae D39 Involved in Quorum Sensing and
Irina Laczkovich1,2, Kyle Mangano3,2, Xinhao Shao3
1Department of Microbiology and Immunology, University of Illinois at Chicagogrid.185648.6, Chicago, Illinois, USA.
Abstract:
Streptococcus pneumoniae, an opportunistic human pathogen, is the leading cause of community-acquired pneumonia and an agent of otitis media, septicemia, and meningitis. Although genomic and transcriptomic studies of S. pneumoniae have provided detailed perspectives on gene content and expression programs, they have lacked information pertaining to the translational landscape, particularly at a resolution that identifies commonly overlooked small open reading frames (sORFs), whose importance is increasingly realized in metabolism, regulation, and virulence. To identify protein-coding sORFs in S. pneumoniae, antibiotic-enhanced ribosome profiling was conducted. Using translation inhibitors, 114 novel sORFs were detected, and the expression of a subset of them was experimentally validated. Two loci associated with virulence and quorum sensing were examined in deeper detail. One such sORF, rio3, overlaps with the noncoding RNA srf-02 that was previously implicated in pathogenesis. Targeted mutagenesis parsing rio3 from srf-02 revealed that rio3 is responsible for the fitness defect seen in a murine nasopharyngeal colonization model. Additionally, two novel sORFs located adjacent to the quorum sensing receptor rgg1518 were found to impact regulatory activity. Our findings emphasize the importance of sORFs present in the genomes of pathogenic bacteria and underscore the utility of ribosome profiling for identifying the bacterial translatome. IMPORTANCE This work employed pleuromutilin-assisted ribosome profiling using retapamulin (Ribo-RET) to identify genome-wide translation start sites in the human pathogen Streptococcus pneumoniae. We identified 114 unannotated intergenic small open reading frames (sORFs). The described procedures and data sets provide a model for microbiologists seeking to explore the translational landscape of bacteria. The biological roles of four sORF examples are characterized: two control the regulation of a cell-cell communication (quorum sensing) system, one contributes to the ability of S. pneumoniae to colonize the upper respiratory tract of mice, and a fourth governs the translation of PrfB, a protein enabling ribosome release at stop codons. We propose that Ribo-RET is a valuable approach to identifying unstudied microproteins and difficult-to-find pheromone genes used by Gram-positive organisms, whose genomes are replete with pheromone receptors.
Insights
Researchers identified 114 new small open reading frames (sORFs) in Streptococcus pneumoniae using ribosome profiling. These sORFs play roles in bacterial virulence and communication, highlighting their importance in pathogen biology.
Area of Science:
- Microbiology and Molecular Biology
- Bacterial Pathogenesis
- Genomics and Transcriptomics
Background:
- Streptococcus pneumoniae is a major cause of bacterial pneumonia and other invasive diseases.
- Previous studies focused on gene content and expression, but the translational landscape, especially small open reading frames (sORFs), remained largely unexplored.
- sORFs are increasingly recognized for their roles in bacterial metabolism, regulation, and virulence.
Purpose of the Study:
- To identify and characterize protein-coding small open reading frames (sORFs) in Streptococcus pneumoniae.
- To investigate the functional roles of newly identified sORFs in bacterial virulence and quorum sensing.
- To demonstrate the utility of antibiotic-enhanced ribosome profiling for exploring bacterial translatomes.
Main Methods:
- Antibiotic-enhanced ribosome profiling (Ribo-RET) using retapamulin was employed to identify genome-wide translation start sites.
- Translation inhibitors were used to detect novel sORFs.
- Experimental validation and targeted mutagenesis were performed to characterize the biological roles of selected sORFs.
Main Results:
- 114 novel, unannotated intergenic small open reading frames (sORFs) were identified in Streptococcus pneumoniae.
- The expression of a subset of these sORFs was experimentally validated.
- Specific sORFs were found to be crucial for virulence (e.g., nasopharyngeal colonization) and regulation of quorum sensing systems.
Conclusions:
- The study highlights the significant, yet often overlooked, importance of sORFs in the genomes of pathogenic bacteria like S. pneumoniae.
- Ribosome profiling, particularly the Ribo-RET method, is a powerful tool for discovering bacterial microproteins and regulatory elements.
- The findings provide a foundation for further research into the bacterial translatome and the roles of sORFs in microbial pathogenesis and communication.
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