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Molecular & Cellular Proteomics

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Integrated Genomic and Proteomic Analyses Reveal Novel Mechanisms of the Methyltransferase SETD2 in Renal Cell Carcinoma Development

Lin Li, View ORCID ProfileWeili Miao, Ming Huang, Preston Williams and Yinsheng Wang  Correspondence email
Molecular & Cellular Proteomics November 28, 2018, mcp.RA118.000957; https://doi.org/10.1074/mcp.RA118.000957
Lin Li
University of California, Riverside, United States
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Weili Miao
University of California, Riverside, United States of America
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  • ORCID record for Weili Miao
Ming Huang
Environmental Toxicology Graduate Program, University of California, Riverside, United States of America
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Preston Williams
Department of chemistry,University of California, Riverside, United States of America
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Yinsheng Wang
University of California, Riverside, United States of America
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  • For correspondence: yinsheng.wang@ucr.edu
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Abstract

Clear cell renal cell carcinoma (ccRCC) is the most common type of RCC in humans. SET domain-containing 2 (SETD2), a lysine methyltransferase for histone and other proteins, has been found to be frequently lost in ccRCC. However, the mechanisms through which deficiency in SETD2 contributes to ccRCC development remain largely unknown. Here, we used a human embryonic kidney epithelial cell line with the SETD2 gene knocked out using CRISPR/Cas9 technology. Using ChIP-seq analysis, we showed that SETD2 loss leads to diminished occupancy of histone H3K36me3 and H4K16ac on actively transcribed genes. Transcriptome sequencing of the knockout cells revealed diminished expression of genes involved in metabolic pathways and elevated expression of genes involved in regulation of RNA polymerase II-mediated transcription. Quantitative proteomic analysis of chromatin-associated proteins showed that genetic ablation of SETD2 leads to elevated chromatin occupancy of proteins involved in chromatin remodeling and RNA polymerase II transcription regulation, and diminished chromatin binding of proteins involved in translation elongation and RNA splicing. Interestingly, we found that SETD2 depletion attenuates cell proliferation, and this can be rescued by knockdown of CDK1. Taken together, we illustrate multiple SETD2-regulated cellular pathways that suppress cancer development and uncover mechanisms underlying aberrant cell cycle regulation in SETD2-depleted cells.

 

  • SETD2
  • PLK1-CDK1 Pathway
  • Cancer Biology*
  • Cell biology*
  • Oncogenes*
  • Proteogenomics
  • RNA SEQ

Footnotes

  • Author contributions: L.L. and Y.W. designed research; L.L. performed research; L.L., W.M., M.H., and P.W. analyzed data; L.L. and Y.W. wrote the paper.

  • Received July 5, 2018.
  • Revision received November 14, 2018.
  • Accepted November 28, 2018.
  • Published under license by The American Society for Biochemistry and Molecular Biology, Inc.
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Integrated Genomic and Proteomic Analyses Reveal Novel Mechanisms of the Methyltransferase SETD2 in Renal Cell Carcinoma Development
Lin Li, Weili Miao, Ming Huang, Preston Williams, Yinsheng Wang
Molecular & Cellular Proteomics November 28, 2018, mcp.RA118.000957; DOI: 10.1074/mcp.RA118.000957

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Integrated Genomic and Proteomic Analyses Reveal Novel Mechanisms of the Methyltransferase SETD2 in Renal Cell Carcinoma Development
Lin Li, Weili Miao, Ming Huang, Preston Williams, Yinsheng Wang
Molecular & Cellular Proteomics November 28, 2018, mcp.RA118.000957; DOI: 10.1074/mcp.RA118.000957
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