Molecular mechanism of the assembly of an acid-sensing receptor ion channel complex.
Yisheng Yang, Megan J Wilson
Index: Nat. Commun. 3 , 1252, (2012)
Full Text: HTML
Abstract
Polycystic kidney disease (PKD) family proteins associate with transient receptor potential (TRP) channel family proteins to form functionally important complexes. PKD proteins differ from known ion channel-forming proteins and are generally thought to act as membrane receptors. Here we find that PKD1L3, a PKD protein, functions as a channel-forming subunit in an acid-sensing heteromeric complex formed by PKD1L3 and TRPP3, a TRP channel protein. Single amino-acid mutations in the putative pore region of both proteins alter the channel's ion selectivity. The PKD1L3/TRPP3 complex in the plasma membrane of live cells contains one PKD1L3 and three TRPP3. A TRPP3 C-terminal coiled-coil domain forms a trimer in solution and in crystal, and has a crucial role in the assembly and surface expression of the PKD1L3/TRPP3 complex. These results demonstrate that PKD subunits constitute a new class of channel-forming proteins, enriching our understanding of the function of PKD proteins and PKD/TRPP complexes.
Related Compounds
Related Articles:
Molecular understanding of sulphuric acid-amine particle nucleation in the atmosphere.
2013-10-17
[Nature 502(7471) , 359-63, (2013)]
2013-10-22
[Proc. Natl. Acad. Sci. U. S. A. 110(43) , 17223-8, (2013)]
Co-application of lidocaine and QX-572 induces divergent pain behaviours in mice.
2015-09-01
[J. Pharm. Pharmacol. 67 , 1272-8, (2015)]
2010-06-01
[J. Breath Res. 4(2) , 026002, (2010)]
Structure simulations for the 0.22 and 1 molar aqueous dimethylammonium chloride solutions.
2012-01-14
[Phys. Chem. Chem. Phys. 14(2) , 849-57, (2012)]