| Literature DB >> 26655473 |
Sara Helander1, Meri Montecchio1, Robert Pilstål2, Yulong Su3, Jacob Kuruvilla4, Malin Elvén1, Javed M E Ziauddin1, Madhanagopal Anandapadamanaban1, Susana Cristobal4, Patrik Lundström1, Rosalie C Sears3, Björn Wallner2, Maria Sunnerhagen5.
Abstract
Hierarchic phosphorylation and concomitant Pin1-mediated proline isomerization of the oncoprotein c-Myc controls its cellular stability and activity. However, the molecular basis for Pin1 recognition and catalysis of c-Myc and other multisite, disordered substrates in cell regulation and disease is unclear. By nuclear magnetic resonance, surface plasmon resonance, and molecular modeling, we show that Pin1 subdomains jointly pre-anchor unphosphorylated c-Myc1-88 in the Pin1 interdomain cleft in a disordered, or "fuzzy", complex at the herein named Myc Box 0 (MB0) conserved region N-terminal to the highly conserved Myc Box I (MBI). Ser62 phosphorylation in MBI intensifies previously transient MBI-Pin1 interactions in c-Myc1-88 binding, and increasingly engages Pin1PPIase and its catalytic region with maintained MB0 interactions. In cellular assays, MB0 mutated c-Myc shows decreased Pin1 interaction, increased protein half-life, but lowered rates of Myc-driven transcription and cell proliferation. We propose that dynamic Pin1 recognition of MB0 contributes to the regulation of c-Myc activity in cells.Entities:
Mesh:
Substances:
Year: 2015 PMID: 26655473 PMCID: PMC4807222 DOI: 10.1016/j.str.2015.10.010
Source DB: PubMed Journal: Structure ISSN: 0969-2126 Impact factor: 5.006