Titration of SF3B1 Activity Reveals Distinct Effects on the Transcriptome and Cell Physiology
SF3B1 is a core component of the U2 spliceosome that is frequently mutated in cancer. We have previously shown that titrating the activity of SF3B1, using the inhibitor pladienolide B (PB), affects distinct steps of the heat shock response (HSR). Here, we identify other genes that are sensitive to d...
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doaj-18ad1ba5c0474d32901d7fbca84106ad2020-12-18T00:06:03ZengMDPI AGInternational Journal of Molecular Sciences1661-65961422-00672020-12-01219641964110.3390/ijms21249641Titration of SF3B1 Activity Reveals Distinct Effects on the Transcriptome and Cell PhysiologyKaren S. Kim Guisbert0Isiah Mossiah1Eric Guisbert2Department of Biomedical and Chemical Engineering and Sciences, Florida Institute of Technology, Melbourne, FL 32937, USADepartment of Biomedical and Chemical Engineering and Sciences, Florida Institute of Technology, Melbourne, FL 32937, USADepartment of Biomedical and Chemical Engineering and Sciences, Florida Institute of Technology, Melbourne, FL 32937, USASF3B1 is a core component of the U2 spliceosome that is frequently mutated in cancer. We have previously shown that titrating the activity of SF3B1, using the inhibitor pladienolide B (PB), affects distinct steps of the heat shock response (HSR). Here, we identify other genes that are sensitive to different levels of SF3B1 (5 vs. 100 nM PB) using RNA sequencing. Significant changes to mRNA splicing were identified at both low PB and high PB concentrations. Changes in expression were also identified in the absence of alternative splicing, suggesting that SF3B1 influences other gene expression pathways. Surprisingly, gene expression changes identified in low PB are not predictive of changes in high PB. Specific pathways were identified with differential sensitivity to PB concentration, including nonsense-mediated decay and protein-folding homeostasis, both of which were validated using independent reporter constructs. Strikingly, cells exposed to low PB displayed enhanced protein-folding capacity relative to untreated cells. These data reveal that the transcriptome is exquisitely sensitive to SF3B1 and suggests that the activity of SF3B1 is finely regulated to coordinate mRNA splicing, gene expression and cellular physiology.https://www.mdpi.com/1422-0067/21/24/9641SF3B1heat shock responseHSRalternative splicingpladienolide Bnonsense-mediated decay |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Karen S. Kim Guisbert Isiah Mossiah Eric Guisbert |
spellingShingle |
Karen S. Kim Guisbert Isiah Mossiah Eric Guisbert Titration of SF3B1 Activity Reveals Distinct Effects on the Transcriptome and Cell Physiology International Journal of Molecular Sciences SF3B1 heat shock response HSR alternative splicing pladienolide B nonsense-mediated decay |
author_facet |
Karen S. Kim Guisbert Isiah Mossiah Eric Guisbert |
author_sort |
Karen S. Kim Guisbert |
title |
Titration of SF3B1 Activity Reveals Distinct Effects on the Transcriptome and Cell Physiology |
title_short |
Titration of SF3B1 Activity Reveals Distinct Effects on the Transcriptome and Cell Physiology |
title_full |
Titration of SF3B1 Activity Reveals Distinct Effects on the Transcriptome and Cell Physiology |
title_fullStr |
Titration of SF3B1 Activity Reveals Distinct Effects on the Transcriptome and Cell Physiology |
title_full_unstemmed |
Titration of SF3B1 Activity Reveals Distinct Effects on the Transcriptome and Cell Physiology |
title_sort |
titration of sf3b1 activity reveals distinct effects on the transcriptome and cell physiology |
publisher |
MDPI AG |
series |
International Journal of Molecular Sciences |
issn |
1661-6596 1422-0067 |
publishDate |
2020-12-01 |
description |
SF3B1 is a core component of the U2 spliceosome that is frequently mutated in cancer. We have previously shown that titrating the activity of SF3B1, using the inhibitor pladienolide B (PB), affects distinct steps of the heat shock response (HSR). Here, we identify other genes that are sensitive to different levels of SF3B1 (5 vs. 100 nM PB) using RNA sequencing. Significant changes to mRNA splicing were identified at both low PB and high PB concentrations. Changes in expression were also identified in the absence of alternative splicing, suggesting that SF3B1 influences other gene expression pathways. Surprisingly, gene expression changes identified in low PB are not predictive of changes in high PB. Specific pathways were identified with differential sensitivity to PB concentration, including nonsense-mediated decay and protein-folding homeostasis, both of which were validated using independent reporter constructs. Strikingly, cells exposed to low PB displayed enhanced protein-folding capacity relative to untreated cells. These data reveal that the transcriptome is exquisitely sensitive to SF3B1 and suggests that the activity of SF3B1 is finely regulated to coordinate mRNA splicing, gene expression and cellular physiology. |
topic |
SF3B1 heat shock response HSR alternative splicing pladienolide B nonsense-mediated decay |
url |
https://www.mdpi.com/1422-0067/21/24/9641 |
work_keys_str_mv |
AT karenskimguisbert titrationofsf3b1activityrevealsdistincteffectsonthetranscriptomeandcellphysiology AT isiahmossiah titrationofsf3b1activityrevealsdistincteffectsonthetranscriptomeandcellphysiology AT ericguisbert titrationofsf3b1activityrevealsdistincteffectsonthetranscriptomeandcellphysiology |
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1724378729017245696 |