Login / Signup

Direct Interaction of Chivosazole F with Actin Elicits Cell Responses Similar to Latrunculin A but Distinct from Chondramide.

Ireos FilipuzziJason Ray ThomasVerena PriesDavid EstoppeyMichael SalciusChristian StuderMarkus SchirleDominic Hoepfner
Published in: ACS chemical biology (2017)
The microbial metabolite Chivosazole F has been described to affect the cytoskeleton and to inhibit actin polymerization in vitro. Applying orthogonal genomic and proteomics approaches, we now show for the first time that Chivosazole F exerts its effect by directly interacting with actin and demonstrate the cellular impact of Chivosazole F in an unbiased, genome-wide context in yeast and in mammalian cells. Furthermore, mutation-based resistance mapping identifies two SNPs located in the putative Chivosazole F binding site of actin. Comparing chemogenomic profiles and responses to the Chivosazole F-resistant SNPs shows a partially conserved mechanism of action for Chivosazole F and Latrunculin A, but clear divergence from Chondramide. In addition, C14orf80 is an evolutionarily highly conserved ORF, lacking any functional annotation. As editing of C14orf80 leads to Chivosazole F hyper-resistance, we propose a function for this gene product in counteracting perturbation of actin filaments.
Keyphrases
  • genome wide
  • dna methylation
  • cell migration
  • copy number
  • crispr cas
  • transcription factor
  • mass spectrometry
  • high resolution
  • stem cells
  • microbial community
  • gene expression
  • single cell
  • mesenchymal stem cells