Citations for
1ARL15, CNNM2, TRPM7
Structural insights into regulation of CNNM-TRPM7 divalent cation uptake by the small GTPase ARL15.
Mahbub L, Kozlov G, Zong P, Lee EL, Tetteh S, Nethramangalath T, Knorn C, Jiang J, Shahsavan A, Yue L, Runnels L, Gehring K.
Elife. Jul 14;12:e86129. doi: 10.7554/eLife.86129. 2023
2CNNM2
Nucleotide binding triggers a conformational change of the CBS module of the magnesium transporter CNNM2 from a twisted towards a flat structure.
Corral-Rodríguez MA, Stuiver M, Abascal-Palacios G, Diercks T, Oyenarte I, Ereño-Orbea J, Ibáñez De Opakua A, Blanco FJ, Encinar JA, Spiwok V, Terashima H, Accardi A, Müller D, Martinez-Cruz LA.
Biochem J iochem J. 2014 Sep 3. [Epub ahead of print] 2014
3CNNM2
Mg2+-dependent interactions of ATP with the cystathionine-β-synthase (CBS) domains of a magnesium transporter.
Hirata Y, Funato Y, Takano Y, Miki H.
J Biol Chem 289(21):14731-9. doi: 10.1074/jbc.M114.551176. Epub 2014 Apr 6. 2014
4CNNM2, HOMGSMR1
CNNM2 mutations cause impaired brain development and seizures in patients with hypomagnesemia.
Arjona FJ, de Baaij JH, Schlingmann KP, Lameris AL, van Wijk E, Flik G, Regele S, Korenke GC, Neophytou B, Rust S, Reintjes N, Konrad M, Bindels RJ, Hoenderop JG.
PLoS Genet 10(4):e1004267. doi: 10.1371/journal.pgen.1004267. eCollection 2014 Apr. 2014
5CNNM1, CNNM2, CNNM3, CNNM4
Identification and lateral membrane localization of cyclin M3, likely to be involved in renal Mg2+ handling in seawater fish.
Islam Z, Hayashi N, Inoue H, Umezawa T, Kimura Y, Doi H, Romero MF, Hirose S, Kato A.
Am J Physiol Regul Integr Comp Physiol 307(5):R525-37. doi: 10.1152/ajpregu.00032.2014. 2014
6CNNM2, HOMG6
Membrane topology and intracellular processing of cyclin M2 (CNNM2).
de Baaij JH, Stuiver M, Meij IC, Lainez S, Kopplin K, Venselaar H, Müller D, Bindels RJ, Hoenderop JG.
J Biol Chem 287(17):13644-55. doi: 10.1074/jbc.M112.342204. Epub 2012 Mar 7. 2012
7CNNM2, HOMGSMR1
CNNM2, encoding a basolateral protein required for renal Mg2+ handling, is mutated in dominant hypomagnesemia.
Stuiver M, Lainez S, Will C, Terryn S, Günzel D, Debaix H, Sommer K, Kopplin K, Thumfart J, Kampik NB, Querfeld U, Willnow TE, Němec V, Wagner CA, Hoenderop JG, Devuyst O, Knoers NV, Bindels RJ, Meij IC, Müller D.
Am J Hum Genet 88(3):333-43. 2011
8ATP2B1, CACNB2, CASZ1, CNNM2, CSK, CYP17A1, EFCAB1, FGF5, ITGA9, MTHFR, PLEKHA7, ULK3
Blood pressure and hypertension are associated with 7 loci in the Japanese population.
Takeuchi F, Isono M, Katsuya T, Yamamoto K, Yokota M, Sugiyama T, Nabika T, Fujioka A, Ohnaka K, Asano H, Yamori Y, Yamaguchi S, Kobayashi S, Takayanagi R, Ogihara T, Kato N.
Circulation 121(21):2302-9. Epub 2010 May 17. 2010
9CNNM2
Functional characterization of ACDP2 (ancient conserved domain protein), a divalent metal transporter.
Goytain A, Quamme GA.
Physiol Genomics 22(3):382-9. Epub 2005 May 17. 2005
10CNNM2
Molecular cloning and characterization of a novel gene family of four ancient conserved domain proteins (ACDP).
Wang CY, Shi JD, Yang P, Kumar PG, Li QZ, Run QG, Su YC, Scott HS, Kao KJ, She JX.
Gene 306:37-44. 2003
11CNNM1, CNNM2, CNNM3, CNNM4, HHATL, PDE4DIP, PFKFB2, XIRP1
Isolation of novel heart-specific genes using the BodyMap database.
Soejima H, Kawamoto S, Akai J, Miyoshi O, Arai Y, Morohka T, Matsuo S, Niikawa N, Kimura A, Okubo K, Mukai T.
Genomics 74(1):115-20. 2001