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Engineering Artificial Factors to Specifically Manipulate Alternative Splicing in Human Cells
Published on: April 26, 2017
Oncogenic KRAS alters splicing factor phosphorylation and alternative splicing in lung cancer
April Lo1,2, Maria McSharry1, Alice H Berger3,4,5
1Human Biology Division, Fred Hutchinson Cancer Center, Seattle, WA, USA.
Background:
Alternative RNA splicing is widely dysregulated in cancers including lung adenocarcinoma, where aberrant splicing events are frequently caused by somatic splice site mutations or somatic mutations of splicing factor genes. However, the majority of mis-splicing in cancers is unexplained by these known mechanisms. We hypothesize that the aberrant Ras signaling characteristic of lung cancers plays a role in promoting the alternative splicing observed in tumors.
Methods:
We recently performed transcriptome and proteome profiling of human lung epithelial cells ectopically expressing oncogenic KRAS and another cancer-associated Ras GTPase, RIT1. Unbiased analysis of phosphoproteome data identified altered splicing factor phosphorylation in KRAS-mutant cells, so we performed differential alternative splicing analysis using rMATS to identify significantly altered isoforms in lung epithelial cells. To determine whether these isoforms were uniquely regulated by KRAS, we performed a large-scale splicing screen in which we generated over 300 unique RNA sequencing profiles of isogenic A549 lung adenocarcinoma cells ectopically expressing 75 different wild-type or variant alleles across 28 genes implicated in lung cancer.
Results:
Mass spectrometry data showed widespread downregulation of splicing factor phosphorylation in lung epithelial cells expressing mutant KRAS compared to cells expressing wild-type KRAS. We observed alternative splicing in the same cells, with 2196 and 2416 skipped exon events in KRASG12V and KRASQ61H cells, respectively, 997 of which were shared (p < 0.001 by hypergeometric test). In the high-throughput splicing screen, mutant KRAS induced the greatest number of differential alternative splicing events, second only to the RNA binding protein RBM45 and its variant RBM45M126I. We identified ten high confidence cassette exon events across multiple KRAS variants and cell lines. These included differential splicing of the Myc Associated Zinc Finger (MAZ). As MAZ regulates expression of KRAS, this splice variant may be a mechanism for the cell to modulate wild-type KRAS levels in the presence of oncogenic KRAS.
Conclusion:
Proteomic and transcriptomic profiling of lung epithelial cells uncovered splicing factor phosphorylation and mRNA splicing events regulated by oncogenic KRAS. These data suggest that in addition to widespread transcriptional changes, the Ras signaling pathway can promote post-transcriptional splicing changes that may contribute to oncogenic processes.
Insights
Aberrant Ras signaling in lung cancer drives alternative RNA splicing by altering splicing factor phosphorylation. This post-transcriptional regulation contributes to oncogenesis alongside transcriptional changes.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genomics
Background:
- Alternative RNA splicing is frequently dysregulated in cancers like lung adenocarcinoma.
- Known mechanisms include splice site mutations and mutations in splicing factor genes.
- A significant portion of cancer-related mis-splicing remains unexplained.
Purpose of the Study:
- To investigate the role of aberrant Ras signaling in promoting alternative RNA splicing in lung cancer.
- To determine if oncogenic KRAS influences splicing factor phosphorylation and mRNA splicing events.
Main Methods:
- Transcriptome and proteome profiling of lung epithelial cells expressing oncogenic KRAS or RIT1.
- Analysis of phosphoproteome data to identify altered splicing factor phosphorylation.
- Differential alternative splicing analysis using rMATS and a large-scale splicing screen of isogenic A549 cells with various KRAS alleles.
Main Results:
- Mutant KRAS induced widespread downregulation of splicing factor phosphorylation.
- Significant numbers of skipped exon events were observed in KRAS-mutant cells.
- Mutant KRAS ranked highly in inducing differential alternative splicing, second only to RBM45.
- Differential splicing of MAZ, which regulates KRAS expression, was identified.
Conclusions:
- Oncogenic KRAS regulates splicing factor phosphorylation and mRNA splicing in lung epithelial cells.
- The Ras signaling pathway contributes to oncogenesis through post-transcriptional splicing changes, in addition to transcriptional alterations.
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