4.6 Article

Phosphorylation regulates the secondary structure and function of dentin phosphoprotein peptides

期刊

BONE
卷 95, 期 -, 页码 65-75

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.bone.2016.10.028

关键词

Biomineralization; Dentin phosphoprotein; Intrinsically disordered protein; Secondary structure transitions; HA crystal growth

资金

  1. National Institutes of Health [DE04141, DE022716, AG019391]
  2. DGAPA-UNAM [IN221913-IA207216]
  3. U.S. Department of Energy [DE-AC02-98CH10886]
  4. Miztli Super-Computing center [SC16-1-IR-90]
  5. DGAPA
  6. CONACYT

向作者/读者索取更多资源

Dentin phosphoprotein (DPP) is the most acidic protein in vertebrates and structurally is classified as an intrinsically disordered protein. Functionally, DPP is related to dentin and bone formation, however the specifics of such association remain unknown. Here, we used atomistic molecular dynamics simulations to screen selected binding domains of DPP onto hydroxyapatite (HA), which is one of its important interacting partners. From these results, we selected a functionally relevant peptide, Ace-SSDSSDSSDSSDSSD-NH2 (named P5) and its phosphorylated form (named P5P), for experimental characterization. SAXS experiments indicated that in solution P5 was disordered, possibly in an extended conformation while P5P displayed more compact globular conformations. Circular dichroism and FTIR confirmed that, either in the presence or absence of Ca2+/HA, P5 adopts a random coil structure, whereas its phosphorylated counterpart, P5P, has a more compact arrangement associated with conformations that display beta-sheet and alpha-helix motifs when bound to HA. In solution, P5 inhibited HA crystal growth, whereas at similar concentrations, P5P stimulated it. These findings suggest that phosphorylation controls the transient formation of secondary and tertiary structure of DPP peptides, and, most likely of DPP itself, which in turn controls HA growth in solution and possibly HA growth in mineralized tissues. (C) 2016 Elsevier Inc All rights reserved.

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