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Summary Expression Phenotypes Gene Literature (46) GO Terms (6) Nucleotides (1367) Proteins (54) Interactants (434) Wiki
XB--1018212

Papers associated with calr



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Mutations in the human naked cuticle homolog NKD1 found in colorectal cancer alter Wnt/Dvl/beta-catenin signaling., Guo J, Cagatay T, Zhou G, Chan CC, Blythe S, Suyama K, Zheng L, Pan K, Qian C, Hamelin R, Thibodeau SN, Klein PS, Wharton KA, Liu W., PLoS One. November 24, 2009; 4 (11): e7982.            


The blood-brain barrier transport and cerebral distribution of guanidinoacetate in rats: involvement of creatine and taurine transporters., Tachikawa M, Kasai Y, Yokoyama R, Fujinawa J, Ganapathy V, Terasaki T, Hosoya K., J Neurochem. October 1, 2009; 111 (2): 499-509.


The colorectal cancer risk at 18q21 is caused by a novel variant altering SMAD7 expression., Pittman AM, Naranjo S, Webb E, Broderick P, Lips EH, van Wezel T, Morreau H, Sullivan K, Fielding S, Twiss P, Vijayakrishnan J, Casares F, Qureshi M, Gómez-Skarmeta JL, Houlston RS., Genome Res. June 1, 2009; 19 (6): 987-93.


Caenorhabditis elegans glutamate transporter deletion induces AMPA-receptor/adenylyl cyclase 9-dependent excitotoxicity., Mano I, Driscoll M., J Neurochem. March 1, 2009; 108 (6): 1373-84.


Expression and possible role of creatine transporter in the brain and at the blood-cerebrospinal fluid barrier as a transporting protein of guanidinoacetate, an endogenous convulsant., Tachikawa M, Fujinawa J, Takahashi M, Kasai Y, Fukaya M, Sakai K, Yamazaki M, Tomi M, Watanabe M, Sakimura K, Terasaki T, Hosoya K., J Neurochem. November 1, 2008; 107 (3): 768-78.


The blood-cerebrospinal fluid barrier is a major pathway of cerebral creatinine clearance: involvement of transporter-mediated process., Tachikawa M, Kasai Y, Takahashi M, Fujinawa J, Kitaichi K, Terasaki T, Hosoya K., J Neurochem. October 1, 2008; 107 (2): 432-42.


Mouse homologues of Shisa antagonistic to Wnt and Fgf signalings., Furushima K, Yamamoto A, Nagano T, Shibata M, Miyachi H, Abe T, Ohshima N, Kiyonari H, Aizawa S., Dev Biol. June 15, 2007; 306 (2): 480-92.  


Shisa2 promotes the maturation of somitic precursors and transition to the segmental fate in Xenopus embryos., Nagano T, Takehara S, Takahashi M, Aizawa S, Yamamoto A., Development. December 1, 2006; 133 (23): 4643-54.                  


Intracellular gonadotropin-releasing hormone receptors in breast cancer and gonadotrope lineage cells., Sedgley KR, Finch AR, Caunt CJ, McArdle CA., J Endocrinol. December 1, 2006; 191 (3): 625-36.


Shisa promotes head formation through the inhibition of receptor protein maturation for the caudalizing factors, Wnt and FGF., Yamamoto A, Nagano T, Takehara S, Hibi M, Aizawa S., Cell. January 28, 2005; 120 (2): 223-35.                      


Ca2+-dependent redox modulation of SERCA 2b by ERp57., Li Y, Camacho P., J Cell Biol. January 5, 2004; 164 (1): 35-46.                    


Characterization of hyaluronan synthase expression and hyaluronan synthesis in bone marrow mesenchymal progenitor cells: predominant expression of HAS1 mRNA and up-regulated hyaluronan synthesis in bone marrow cells derived from multiple myeloma patients., Calabro A, Oken MM, Hascall VC, Masellis AM., Blood. October 1, 2002; 100 (7): 2578-85.


COUP-TF1 antagonizes Nkx2.5-mediated activation of the calreticulin gene during cardiac development., Guo L, Lynch J, Nakamura K, Fliegel L, Kasahara H, Izumo S, Komuro I, Agellon LB, Michalak M., J Biol Chem. January 26, 2001; 276 (4): 2797-801.


Calreticulin modulates capacitative Ca2+ influx by controlling the extent of inositol 1,4,5-trisphosphate-induced Ca2+ store depletion., Xu W, Longo FJ, Wintermantel MR, Jiang X, Clark RA, DeLisle S., J Biol Chem. November 24, 2000; 275 (47): 36676-82.


Cytosolic phosphorylation of calnexin controls intracellular Ca(2+) oscillations via an interaction with SERCA2b., Roderick HL, Lechleiter JD, Camacho P., J Cell Biol. June 12, 2000; 149 (6): 1235-48.                    


The pharmacological and functional characteristics of the serotonin 5-HT(3A) receptor are specifically modified by a 5-HT(3B) receptor subunit., Dubin AE, Huvar R, D'Andrea MR, Pyati J, Zhu JY, Joy KC, Wilson SJ, Galindo JE, Glass CA, Luo L, Jackson MR, Lovenberg TW, Erlander MG., J Biol Chem. October 22, 1999; 274 (43): 30799-810.


Polyspecific substrate uptake by the hepatic organic anion transporter Oatp1 in stably transfected CHO cells., Eckhardt U, Schroeder A, Stieger B, Höchli M, Landmann L, Tynes R, Meier PJ, Hagenbuch B., Am J Physiol. April 1, 1999; 276 (4): G1037-42.


Molecular characterization of the human CRT-1 creatine transporter expressed in Xenopus oocytes., Dai W, Vinnakota S, Qian X, Kunze DL, Sarkar HK., Arch Biochem Biophys. January 1, 1999; 361 (1): 75-84.


Differential modulation of SERCA2 isoforms by calreticulin., John LM, Lechleiter JD, Camacho P., J Cell Biol. August 24, 1998; 142 (4): 963-73.            


Uptake of the mycotoxin ochratoxin A in liver cells occurs via the cloned organic anion transporting polypeptide., Kontaxi M, Echkardt U, Hagenbuch B, Stieger B, Meier PJ, Petzinger E., J Pharmacol Exp Ther. December 1, 1996; 279 (3): 1507-13.


Strong expression of the calreticulin gene in the liver of Rana rugosa tadpoles, but not adult frogs., Yamamoto S, Kondo Y, Hanada H, Nakamura M., J Exp Zool. August 15, 1996; 275 (6): 431-43.


The peptide-based thrombin inhibitor CRC 220 is a new substrate of the basolateral rat liver organic anion-transporting polypeptide., Eckhardt U, Horz JA, Petzinger E, Stüber W, Reers M, Dickneite G, Daniel H, Wagener M, Hagenbuch B, Stieger B, Meier PJ., Hepatology. August 1, 1996; 24 (2): 380-4.


Calreticulin inhibits repetitive intracellular Ca2+ waves., Camacho P, Lechleiter JD., Cell. September 8, 1995; 82 (5): 765-71.


Presence of inositol 1,4,5-trisphosphate receptor, calreticulin, and calsequestrin in eggs of sea urchins and Xenopus laevis., Parys JB, McPherson SM, Mathews L, Campbell KP, Longo FJ., Dev Biol. February 1, 1994; 161 (2): 466-76.        


Identification of calreticulin isoforms in the central nervous system., Treves S, Zorzato F, Pozzan T., Biochem J. October 15, 1992; 287 ( Pt 2) 579-81.

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