4.7 Article

Resolving the Combinatorial Complexity of Smad Protein Complex Formation and Its Link to Gene Expression

Journal

CELL SYSTEMS
Volume 6, Issue 1, Pages 75-+

Publisher

CELL PRESS
DOI: 10.1016/j.cels.2017.11.010

Keywords

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Funding

  1. NIH [1R01DK090347-01]
  2. DFG [SFB/Transregio 179]
  3. German Ministry of Education and Research (BMBF) within the e: Bio collaborative research project Systems Biology of Erythropoietin'' (SBEpo) [0316182B]
  4. German Ministry of Education and Research (BMBF) within the e: Bio collaborative research project Multi-Scale Modeling of Drug Induced Liver Injury'' (MS_DILI) [031L0074A, 031L0074B]
  5. junior group EAsys within Virtual Liver Network [031L0080, 0315745, 0315741]
  6. junior group EAsys within Liver Systems Medicine network (LiSyM) [031L0080, 031L0042, 031L0048]
  7. junior group EAsys within CancerSys network LungSys II [031L0080, 0316042A]
  8. junior group EAsys within German Center for Lung Research (DZL) [031L0080, 82DZL00404]

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Upon stimulation of cells with transforming growth factor beta (TGF-beta), Smad proteins form trimeric complexes and activate a broad spectrum of target genes. It remains unresolved which of the possible Smad complexes are formed in cellular contexts and how these contribute to gene expression. By combining quantitative mass spectrometry with a computational selection strategy, we predict and provide experimental evidence for the three most relevant Smad complexes in the mouse hepatoma cell line Hepa1-6. Utilizing dynamic pathway modeling, we specify the contribution of each Smad complex to the expression of representative Smad target genes, and show that these contributions are conserved in human hepatoma cell lines and primary hepatocytes. We predict, based on gene expression data of patient samples, increased amounts of Smad2/3/4 proteins and Smad2 phosphorylation as hallmarks of hepatocellular carcinoma and experimentally verify this prediction. Our findings demonstrate that modeling approaches can disentangle the complexity of transcription factor complex formation and its impact on gene expression.

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