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Analysis of RNA Processing Reactions Using Cell Free Systems: 3' End Cleavage of Pre-mRNA Substrates in vitro
Published on: May 3, 2014
Role of RNase Y in Clostridium perfringens mRNA Decay and Processing
Nozomu Obana1, Kouji Nakamura2, Nobuhiko Nomura2
1Faculty of Life and Environmental Sciences, University of Tsukuba, Tsukuba, Ibaraki, Japan obana.nozomu.gb@u.tsukuba.ac.jp.
Abstract:
RNase Y is a major endoribonuclease that plays a crucial role in mRNA degradation and processing. We study the role of RNase Y in the Gram-positive anaerobic pathogen Clostridium perfringens, which until now has not been well understood. Our study implies an important role for RNase Y-mediated RNA degradation and processing in virulence gene expression and the physiological development of the organism. We began by constructing an RNase Y conditional knockdown strain in order to observe the importance of RNase Y on growth and virulence. Our resulting transcriptome analysis shows that RNase Y affects the expression of many genes, including toxin-producing genes. We provide data to show that RNase Y depletion repressed several toxin genes in C. perfringens and involved the virR-virS two-component system. We also observe evidence that RNase Y is indispensable for processing and stabilizing the transcripts of colA (encoding a major toxin collagenase) and pilA2 (encoding a major pilin component of the type IV pili). Posttranscriptional regulation of colA is known to be mediated by cleavage in the 5' untranslated region (5'UTR), and we observe that RNase Y depletion diminishes colA 5'UTR processing. We show that RNase Y is also involved in the posttranscriptional stabilization of pilA2 mRNA, which is thought to be important for host cell adherence and biofilm formation.
Importance:
RNases have important roles in RNA degradation and turnover in all organisms. C. perfringens is a Gram-positive anaerobic spore-forming bacterial pathogen that produces numerous extracellular enzymes and toxins, and it is linked to digestive disorders and disease. A highly conserved endoribonuclease, RNase Y, affects the expression of hundreds of genes, including toxin genes, and studying these effects is useful for understanding C. perfringens specifically and RNases generally. Moreover, RNase Y is involved in processing specific transcripts, and we observed that this processing in C. perfringens results in the stabilization of mRNAs encoding a toxin and bacterial extracellular apparatus pili. Our study shows that RNase activity is associated with gene expression, helping to determine the growth, proliferation, and virulence of C. perfringens.
Insights
RNase Y is essential for Clostridium perfringens virulence, regulating toxin production and stabilizing key virulence factor mRNAs. Its depletion impacts gene expression, affecting growth and pathogen development.
Area of Science:
- Microbiology
- Molecular Biology
- Bacteriology
Background:
- RNase Y is a critical endoribonuclease involved in RNA metabolism across organisms.
- Clostridium perfringens is a pathogenic bacterium where RNase Y's role in virulence remains underexplored.
- RNase Y influences gene expression, including toxin production, impacting bacterial physiology.
Purpose of the Study:
- To investigate the function of RNase Y in the Gram-positive anaerobic pathogen Clostridium perfringens.
- To elucidate RNase Y's role in regulating virulence gene expression and bacterial development.
- To understand RNase Y's impact on specific toxin and pilin mRNA processing and stability.
Main Methods:
- Construction of a conditional RNase Y knockdown strain in Clostridium perfringens.
- Transcriptome analysis (RNA sequencing) to assess gene expression changes.
- Analysis of specific mRNA processing and stability, including 5' untranslated regions.
Main Results:
- RNase Y depletion significantly repressed several toxin genes in C. perfringens, involving the virR-virS two-component system.
- RNase Y is crucial for the processing and stabilization of colA (collagenase) and pilA2 (pilin) mRNAs.
- Depletion of RNase Y diminished colA 5'UTR processing and affected pilA2 mRNA stability, impacting host cell adherence and biofilm formation.
Conclusions:
- RNase Y plays a vital role in posttranscriptional regulation of virulence factors in Clostridium perfringens.
- RNase Y is indispensable for the proper processing and stabilization of key virulence-associated transcripts.
- Understanding RNase Y function provides insights into Clostridium perfringens pathogenesis and RNA metabolism.
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