AI Article Synopsis

  • THAP11 is a cell cycle and growth regulator implicated in cancer, recognized for its unique transcription factor role and DNA-binding capabilities.
  • The study presents the crystal structure of THAP11’s C-terminal region, revealing the first 3D view of a coiled-coil motif within the THAP family.
  • Research into this structure using molecular dynamics and biophysical experiments shows that THAP11 forms a uniquely structured left-handed parallel homo-dimeric coiled-coil.

Article Abstract

Thanatos associated protein 11 (THAP11) is a cell cycle and cell growth regulator differentially expressed in cancer cells. THAP11 belongs to a distinct family of transcription factors recognizing specific DNA sequences via an atypical zinc finger motif and regulating diverse cellular processes. Outside the extensively characterized DNA-binding domain, THAP proteins vary in size and predicted domains, for which structural data are still lacking. We report here the crystal structure of the C-terminal region of human THAP11 protein, providing the first 3D structure of a coiled-coil motif from a THAP family member. We further investigate the stability, dynamics and oligomeric properties of the determined structure combining molecular dynamics simulations and biophysical experiments. Our results show that the C-ter region of THAP11 forms a left-handed parallel homo-dimeric coiled-coil structure possessing several unusual features.

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Source
http://dx.doi.org/10.1016/j.jsb.2016.03.010DOI Listing

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