» Articles » PMID: 9171830

PKD1 Interacts with PKD2 Through a Probable Coiled-coil Domain

Overview
Journal Nat Genet
Specialty Genetics
Date 1997 Jun 1
PMID 9171830
Citations 248
Authors
Affiliations
Soon will be listed here.
Abstract

Autosomal dominant polycystic kidney disease (ADPKD) describes a group of at least three genetically distinct disorders with almost identical clinical features that collectively affects 1:1,000 of the population. Affected individuals typically develop large cystic kidneys and approximately one half develop end-stage renal disease by their seventh decade. It has been suggested that the diseases result from defects in interactive factors involved in a common pathway. The recent discovery of the genes for the two most common forms of ADPKD has provided an opportunity to test this hypothesis. We describe a previously unrecognized coiled-coil domain within the C terminus of the PKD1 gene product, polycystin, and demonstrate that it binds specifically to the C terminus of PKD2. Homotypic interactions involving the C terminus of each are also demonstrated. We show that naturally occurring pathogenic mutations of PKD1 and PKD2 disrupt their associations. We have characterized the structural basis of their heterotypic interactions by deletional and site-specific mutagenesis. Our data suggest that PKD1 and PKD2 associate physically in vivo and may be partners of a common signalling cascade involved in tubular morphogenesis.

Citing Articles

Cholesterol ensures ciliary polycystin-2 localization to prevent polycystic kidney disease.

Itabashi T, Hosoba K, Morita T, Kimura S, Yamaoka K, Hirosawa M Life Sci Alliance. 2025; 8(4).

PMID: 39900437 PMC: 11791027. DOI: 10.26508/lsa.202403063.


Polycystin-1 regulates tendon-derived mesenchymal stem cells fate and matrix organization in heterotopic ossification.

Xu Y, Huang M, Zhang Y, Su X, Huang M, Zou N Bone Res. 2025; 13(1):11.

PMID: 39833160 PMC: 11746979. DOI: 10.1038/s41413-024-00392-y.


Exquisite sensitivity of Polycystin-1 to HO concentration in the endoplasmic reticulum.

Speranza E, Sorrentino I, Boletta A, Sitia R Redox Biol. 2025; 80:103486.

PMID: 39787899 PMC: 11763840. DOI: 10.1016/j.redox.2024.103486.


Hyperosmolality activates polycystin-2 and TRPM4 in renal primary cilium.

Kleene S Pflugers Arch. 2024; 477(3):479-494.

PMID: 39688695 DOI: 10.1007/s00424-024-03050-8.


Molecular and structural basis of the dual regulation of the polycystin-2 ion channel by small-molecule ligands.

Wang Z, Chen M, Su Q, Morais T, Wang Y, Nazginov E Proc Natl Acad Sci U S A. 2024; 121(12):e2316230121.

PMID: 38483987 PMC: 10962963. DOI: 10.1073/pnas.2316230121.