Citations for
1PKD1L3, pKD2L1
A PKD1L3 splice variant in taste buds is not cleaved at the G protein-coupled receptor proteolytic site.
Kashyap P, Ng C, Wang Z, Li B, Arif Pavel M, Martin H, Yu Y.
Biochem Biophys Res Commun. May 14;512(4):812-818. doi: 10.1016/j.bbrc.2019.03.099. Epub 2019 Mar 27 2019
2PKD2L1
Deficiency of PKD2L1 (TRPP3) Exacerbates Pathological Cardiac Hypertrophy by Augmenting NCX1-Mediated Mitochondrial Calcium Overload.
Lu Z, Cui Y, Wei X, Gao P, Zhang H, Wei X, Li Q, Sun F, Yan Z, Zheng H, Yang G, Liu D, Zhu Z.
Cell Rep. Aug 7;24(6):1639-1652. doi: 10.1016/j.celrep.2018.07.022 2018
3PKD1L3, PKD2L1
Identification of clustered phosphorylation sites in PKD2L1: how PKD2L1 channel activation is regulated by cyclic adenosine monophosphate signaling pathway.
Park EYJ, Kwak M, Ha K, So I.
Pflugers Arch. Mar;470(3):505-516. doi: 10.1007/s00424-017-2095-7. Epub 2017 Dec 11 2018
4PKD1L3, PKD2L1
A novel PKD2L1 C-terminal domain critical for trimerization and channel function.
Zheng W, Hussein S, Yang J, Huang J, Zhang F, Hernandez-Anzaldo S, Fernandez-Patron C, Cao Y, Zeng H, Tang J, Chen XZ.
Sci Rep. Mar 30;5:9460. doi: 10.1038/srep09460. 2015
5PKD1L1, PKD2L1
Direct recording and molecular identification of the calcium channel of primary cilia.
DeCaen PG, Delling M, Vien TN, Clapham DE.
Nature 504(7479):315-8. doi: 10.1038/nature12832. Erratum in: Nature. 2014 Sep 11;513(7517):266. 2013
6GLI1, GLI2, PKD1L1, PKD2L1
Primary cilia are specialized calcium signalling organelles.
Delling M, DeCaen PG, Doerner JF, Febvay S, Clapham DE.
Nature 504(7479):311-4. doi: 10.1038/nature12833. 2013
7PKD2L1, RACK1
Receptor for activated C kinase 1 (RACK1) inhibits function of transient receptor potential (TRP)-type channel Pkd2L1 through physical interaction.
Yang J, Wang Q, Zheng W, Tuli J, Li Q, Wu Y, Hussein S, Dai XQ, Shafiei S, Li XG, Shen PY, Tu JC, Chen XZ.
J Biol Chem. Feb 24;287(9):6551-61. doi: 10.1074/jbc.M111.305854. Epub 2011 Dec 15 2012
8PKD2L1
Crystal structure and characterization of coiled-coil domain of the transient receptor potential channel PKD2L1.
Molland KL, Paul LN, Yernool DA.
Biochim Biophys Acta. Mar;1824(3):413-21. doi: 10.1016/j.bbapap.2011.12.002. Epub 2011 Dec 13. 2012
9PKD1L3, PKD2L1
Molecular mechanism of the assembly of an acid-sensing receptor ion channel complex.
Yu Y, Ulbrich MH, Li MH, Dobbins S, Zhang WK, Tong L, Isacoff EY, Yang J.
Nat Commun. 3:1252. doi: 10.1038/ncomms2257 2012
10PKD1L3, PKD2L1
Crystal structure and characterization of coiled-coil domain of the transient receptor potential channel PKD2L1.
Molland KL, Paul LN, Yernool DA.
Biochim Biophys Acta. Mar;1824(3):413-21. doi: 10.1016/j.bbapap.2011.12.002. Epub 2011 Dec 13. 2012
11PKD1L3, PKD2L1
Molecular evolution of candidate sour taste receptor gene PKD1L3 in mammals.
Chen D, Li P, Guo W, Ye F, Wu J, Wei D, Guo Z, Ye C.
Genome Nov;54(11):890-7. doi: 10.1139/g11-057. Epub 2011 Oct 20 2011
12PKD2, PKD2L1
Identification of the structural motif responsible for trimeric assembly of the C-terminal regulatory domains of polycystin channels PKD2L1 and PKD2.
Molland KL, Narayanan A, Burgner JW, Yernool DA.
Biochem J. 429(1):171-83. 2010
13PKD1L3, PKD2L1
Off-response property of an acid-activated cation channel complex PKD1L3-PKD2L1.
Inada H, Kawabata F, Ishimaru Y, Fushiki T, Matsunami H, Tominaga M.
EMBO Rep 9(7):690-7. Epub 2008 Jun 6. 2008
14PKD2L1, PKD1L3
Transient receptor potential family members PKD1L3 and PKD2L1 form a candidate sour taste receptor.
Ishimaru Y, Inada H, Kubota M, Zhuang H, Tominaga M, Matsunami H.
Proc Natl Acad Sci U S A 103(33):12569-74. Epub 2006 Aug 4. 2006
15PKD2L1, TNNI1, TNNI2
Troponin I binds polycystin-L and inhibits its calcium-induced channel activation.
Li Q, Liu Y, Shen PY, Dai XQ, Wang S, Smillie LB, Sandford R, Chen XZ.
Biochemistry 42(24):7618-25. 2003
16NPHS2, PKD2L1, SRN1
Tissue and cellular localization of a novel polycystic kidney disease-like gene product, polycystin-L.
Basora N, Nomura H, Berger UV, Stayner C, Guo L, Shen X, Zhou J.
J Am Soc Nephrol 13(2):293-301. 2002
17PKD2L1
The human polycystic kidney disease 2-like (PKDL) gene: exon/intron structure and evidence for a novel splicing mechanism.
Guo L, Chen M, Basora N, Zhou J.
Mamm Genome 11(1):46-50. 2000
18PKD2L1
Polycystin-L is a calcium-regulated cation channel permeable to calcium ions.
Chen XZ, et al.
Nature 401(6751):383-6. 1999
19PKD, PKD1, PKD2, PKD2L1, PKD2L2, PKDREJ
Genes homologous to the autosomal dominant polycystic kidney disease genes.
Veldhuisen B, Spruit L, Dauwerse HG, Breuning MH, Peters DJ.
Eur J Hum Genet 7(8):860-72 1999
20PKD2L1
Identification of PKDL, a novel polycystic kidney disease 2-like gene whose murine homologue is deleted in mice with kidney and retinal defects.
Nomura H, Turco AE, Pei Y, Kalaydjieva L, Schiavello T, Weremowicz S, Ji W, Morton CC, Meisler M, Reeders ST, Zhou J.
J Biol Chem 273 : 25967-25973. 1998
21PKD2L1
Identification of PKD2L, a human PKD2-related gene : tissue-specific expression and mapping to chromosome 10q25.
Wu G, Hayashi T, Park JH, Dixit M, Reynolds DM, Li L, Maeda Y, Cai Y, Coca-Prados M, Somlo S.
Genomics 54 : 564-568. 1998
22PKD1L3, PKD2L1
Influx-Operated Ca(2+) Entry via PKD2-L1 and PKD1-L3 Channels Facilitates Sensory Responses to Polymodal Transient Stimuli.
Hu M, Liu Y, Wu J, Liu X.