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Loss-of-Function PTPRD Mutations Lead to Increased STAT3 Activation and Sensitivity to STAT3 Inhibition in Head and Neck Cancer

Authors: Grandis, JR; Peyser, ND; Du, Y; Li, H; Lui, WYV; Xiao, X; Chan, TA;

Loss-of-Function PTPRD Mutations Lead to Increased STAT3 Activation and Sensitivity to STAT3 Inhibition in Head and Neck Cancer

Abstract

Protein tyrosine phosphatase receptor type D (PTPRD) is a putative tumor suppressor in several cancers including head and neck squamous cell carcinoma (HNSCC). STAT3 is a frequently hyperactivated oncogene in HNSCC. As STAT3 is a direct substrate of PTPRD, we sought to determine the genetic or epigenetic alterations of PTPRD that contribute to overactive STAT3 in HNSCC.We analyzed data from The Cancer Genome Atlas (TCGA) and our previous whole-exome sequencing study and summarized the mutation, methylation, and copy number status of PTPRD in HNSCC and other cancers. In vitro studies involved standard transfection and MTT protocols, as well as methylation-specific PCR.Our findings indicate that PTPRD mutation, rather than methylation or copy number alteration, is the primary mechanism by which PTPRD function is lost in HNSCC. We demonstrate that overexpression of wild-type PTPRD in HNSCC cells significantly inhibits growth and STAT3 activation while PTPRD mutants do not, suggesting that mutation may lead to loss of function and subsequent hyper-phosphorylation of PTPRD substrates, especially STAT3. Importantly, we determined that HNSCC cells harboring an endogenous PTPRD mutation are more sensitive to STAT3 blockade than PTPRD wild-type cells. We additionally found that PTPRD mRNA expression does not correlate with pSTAT3 expression, suggesting that alterations that manifest through altered mRNA expression, including hypermethylation and gene copy number alterations, do not significantly contribute to STAT3 overactivation in HNSCC.PTPRD mutation, but not methylation or copy number loss, may serve as a predictive biomarker of sensitivity to STAT3 inhibitors in HNSCC.

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Keywords

General Science & Technology (science-metrix), Receptor-Like Protein Tyrosine Phosphatases, Head and Neck Neoplasms (mesh), 2.1 Biological and endogenous factors, Site-Directed, 32 Biomedical and Clinical Sciences (for-2020), STAT3 Transcription Factor (mesh), Cancer, Cancer (rcdc), Humans (mesh), Mutation (mesh), Q, R, Receptor-Like Protein Tyrosine Phosphatases, Class 2, Biological Sciences, Head and Neck Neoplasms, Medicine, Digestive Diseases (rcdc), Research Article, Site-Directed (mesh), STAT3 Transcription Factor, General Science & Technology, Science, Oncology and Carcinogenesis, Immunoblotting, 610, Cell Line, Rare Diseases (rcdc), Rare Diseases, Cancer Genomics, Genetics, Immunoblotting (mesh), Humans, Dental/Oral and Craniofacial Disease, DNA Methylation (mesh), Class 2 (mesh), 31 Biological Sciences (for-2020), Biomedical and Clinical Sciences, Genetics (rcdc), Human Genome, 4.1 Discovery and preclinical testing of markers and technologies (hrcs-rac), Class 2, 2.1 Biological and endogenous factors (hrcs-rac), Cancer (hrcs-hc), Dental/Oral and Craniofacial Disease (rcdc), DNA Methylation, Human Genome (rcdc), 4.1 Discovery and preclinical testing of markers and technologies, 3211 Oncology and Carcinogenesis (for-2020), Mutagenesis, Mutation, Cell Line (mesh), Mutagenesis, Site-Directed, Digestive Diseases, Cancer Genomics (rcdc)

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citations
This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Citations provided by BIP!
popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
BIP!Popularity provided by BIP!
influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Influence provided by BIP!
impulse
This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.
BIP!Impulse provided by BIP!
57
Top 10%
Top 10%
Top 10%
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