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Specific Association of the Gene Product of PKD2 with the TRPC1 Channel

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Specialty Science
Date 1999 Mar 31
PMID 10097141
Citations 113
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Abstract

The function(s) of the genes (PKD1 and PKD2) responsible for the majority of cases of autosomal dominant polycystic kidney disease is unknown. While PKD1 encodes a large integral membrane protein containing several structural motifs found in known proteins involved in cell-cell or cell-matrix interactions, PKD2 has homology to PKD1 and the major subunit of the voltage-activated Ca2+ channels. We now describe sequence homology between PKD2 and various members of the mammalian transient receptor potential channel (TRPC) proteins, thought to be activated by G protein-coupled receptor activation and/or depletion of internal Ca2+ stores. We show that PKD2 can directly associate with TRPC1 but not TRPC3 in transfected cells and in vitro. This association is mediated by two distinct domains in PKD2. One domain involves a minimal region of 73 amino acids in the C-terminal cytoplasmic tail of PKD2 shown previously to constitute an interacting domain with PKD1. However, distinct residues within this region mediate specific interactions with TRPC1 or PKD1. The C-terminal domain is sufficient but not necessary for the PKD2-TRPC1 association. A more N-terminal domain located within transmembrane segments S2 and S5, including a putative pore helical region between S5 and S6, is also responsible for the association. Given the ability of the TRPC to form functional homo- and heteromultimeric complexes, these data provide evidence that PKD2 may be functionally related to TRPC proteins and suggest a possible role of PKD2 in modulating Ca2+ entry in response to G protein-coupled receptor activation and/or store depletion.

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References
1.
Mochizuki T, Wu G, Hayashi T, Xenophontos S, Veldhuisen B, Saris J . PKD2, a gene for polycystic kidney disease that encodes an integral membrane protein. Science. 1996; 272(5266):1339-42. DOI: 10.1126/science.272.5266.1339. View

2.
Perez-Reyes E, Schneider T . Molecular biology of calcium channels. Kidney Int. 1995; 48(4):1111-24. DOI: 10.1038/ki.1995.395. View

3.
Zitt C, Zobel A, Obukhov A, Harteneck C, Kalkbrenner F, Luckhoff A . Cloning and functional expression of a human Ca2+-permeable cation channel activated by calcium store depletion. Neuron. 1996; 16(6):1189-96. DOI: 10.1016/s0896-6273(00)80145-2. View

4.
Minke B, SELINGER Z . Role of Drosophila TRP in inositide-mediated Ca2+ entry. Mol Neurobiol. 1996; 12(2):163-80. DOI: 10.1007/BF02740652. View

5.
Obukhov A, Harteneck C, Zobel A, Harhammer R, Kalkbrenner F, Leopoldt D . Direct activation of trpl cation channels by G alpha11 subunits. EMBO J. 1996; 15(21):5833-8. PMC: 452331. View