| Literature DB >> 30220543 |
Nelly R Hajizadeh1, Joanna Pieprzyk2, Petr Skopintsev2, Ali Flayhan2, Dmitri I Svergun3, Christian Löw4.
Abstract
The scaffolding protein PDZK1 has been associated with the regulation of membrane transporters. It contains four conserved PDZ domains, which typically recognize a 3-5-residue long motif at the C terminus of the binding partner. The atomic structures of the individual domains are available but their spatial arrangement in the full-length context influencing the binding properties remained elusive. Here we report a systematic study of full-length PDZK1 and deletion constructs using small-angle X-ray scattering, complemented with biochemical and functional studies on PDZK1 binding to known membrane protein partners. A hybrid modeling approach utilizing multiple scattering datasets yielded a well-defined, extended, asymmetric L-shaped domain organization of PDZK1 in contrast to a flexible "beads-on-string" model predicted by bioinformatics analysis. The linker regions of PDZK1 appear to play a central role in the arrangement of the four domains underlying the importance of studying scaffolding proteins in their full-length context.Entities:
Keywords: PDZ domains; SAXS; X-ray crystallography; peptide transporter; scaffolding protein; sodium-proton exchanger
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Year: 2018 PMID: 30220543 DOI: 10.1016/j.str.2018.07.016
Source DB: PubMed Journal: Structure ISSN: 0969-2126 Impact factor: 5.006