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PAF53 is essential in mammalian cells: CRISPR/Cas9 fails to eliminate PAF53 expression
Lawrence I Rothblum1, Katrina Rothblum1, Eugenie Chang1
1Depoartment of Cell Biology, The University of Oklahoma College of Medicine, Oklahoma City, OK 73104, United States.
Abstract:
When mammalian cells are nutrient and/or growth factor deprived, exposed to inhibitors of protein synthesis, stressed by heat shock or grown to confluence, rDNA transcription is essentially shut off. Various mechanisms are available to accomplish this downshift in ribosome biogenesis. Muramatsu's laboratory (Hanada et al., 1996) first demonstrated that mammalian PAF53 was essential for specific rDNA transcription and that PAF53 levels were regulated in response to growth factors. While S. cerevisae A49, the homologue of vertebrate PAF53, is not essential for viability (Liljelund et al., 1992), deletion of yA49 results in colonies that grow at 6% of the wild type rate at 25°C. Experiments described by Wang et al. (2015) identified PAF53 as a gene "essential for optimal proliferation". However, they did not discriminate genes essential for viability. Hence, in order to resolve this question, we designed a series of experiments to determine if PAF53 was essential for cell survival. We set out to delete the gene product from mammalian cells using CRISPR/CAS9 technology. Human 293 cells were transfected with lentiCRISPR v2 carrying genes for various sgRNA that targeted PAF53. In some experiments, the cells were cotransfected in parallel with plasmids encoding FLAG-tagged mouse PAF53. After treating the transfected cells with puromycin (to select for the lentiCRISPR backbone), cells were cloned and analyzed by western blots for PAF53 expression. Genomic DNA was amplified across the "CRISPRd" exon, cloned and sequenced to identify mutated PAF53 genes. We obtained cell lines in which the endogenous PAF53 gene was "knocked out" only when we rescued with FLAG-PAF53. DNA sequencing demonstrated that in the absence of ectopic PAF53 expression, cells demonstrated unique means of surviving; including recombination or the utilization of alternative reading frames. We never observed a clone in which one PAF53 gene is expressed, unless there was also ectopic expression In the absence of ectopic gene expression, the gene products of both endogenous genes were expressed, irrespective of whether they were partially mutant proteins or not.
Insights
Mammalian cells can survive PAF53 gene deletion through recombination or alternative reading frames, indicating it
Area of Science:
- Cell Biology
- Molecular Biology
- Genetics
Background:
- Ribosome biogenesis, specifically rDNA transcription, is downregulated under various cellular stresses.
- Mammalian PAF53 is known to be essential for specific rDNA transcription and its levels are growth-factor regulated.
- Previous studies identified PAF53 as essential for optimal proliferation but not definitively for cell viability.
Purpose of the Study:
- To determine if the PAF53 gene is essential for mammalian cell survival.
- To investigate the mechanisms by which cells might survive PAF53 gene deletion.
Main Methods:
- CRISPR/Cas9 technology was employed to target and delete the PAF53 gene in human 293 cells.
- Cells were transfected with lentiCRISPR v2 and sgRNAs targeting PAF53, with some experiments including rescue with FLAG-tagged mouse PAF53.
- Puromycin selection, western blot analysis, and genomic DNA sequencing were used to confirm gene knockout and identify mutations.
Main Results:
- Complete knockout of the endogenous PAF53 gene was only achieved when cells were rescued with ectopic PAF53 expression.
- In the absence of rescue, cells survived PAF53 deletion through mechanisms such as recombination or utilization of alternative reading frames.
- Sequencing revealed that endogenous PAF53 gene products were expressed even with mutations, unless ectopic expression was present.
Conclusions:
- PAF53 is essential for mammalian cell viability, as complete knockout necessitates rescue.
- Cells possess alternative survival mechanisms, including genetic recombination and alternative reading frames, to compensate for PAF53 loss.
- The study clarifies the essential role of PAF53 in cell survival beyond optimal proliferation.
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