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Summary Expression Phenotypes Gene Literature (21) GO Terms (2) Nucleotides (60) Proteins (39) Interactants (339) Wiki
XB--852782

Papers associated with ndp



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Repression of Inappropriate Gene Expression in the Vertebrate Embryonic Ectoderm., Reich S, Weinstein DC., Genes (Basel). November 6, 2019; 10 (11):         


TSPAN12 Is a Norrin Co-receptor that Amplifies Frizzled4 Ligand Selectivity and Signaling., Lai MB, Zhang C, Shi J, Johnson V, Khandan L, McVey J, Klymkowsky MW, Chen Z, Junge HJ., Cell Rep. June 27, 2017; 19 (13): 2809-2822.  


High variability of expression profiles of homeologous genes for Wnt, Hh, Notch, and Hippo signaling pathways in Xenopus laevis., Michiue T, Yamamoto T, Yasuoka Y, Goto T, Ikeda T, Nagura K, Nakayama T, Taira M, Kinoshita T., Dev Biol. June 15, 2017; 426 (2): 270-290.                  


Prediction of Functionally Important Phospho-Regulatory Events in Xenopus laevis Oocytes., Johnson JR, Santos SD, Johnson T, Pieper U, Strumillo M, Wagih O, Sali A, Krogan NJ, Beltrao P., PLoS Comput Biol. August 27, 2015; 11 (8): e1004362.                            


Structure and functional properties of Norrin mimic Wnt for signalling with Frizzled4, Lrp5/6, and proteoglycan., Chang TH, Hsieh FL, Zebisch M, Harlos K, Elegheert J, Jones EY., Elife. July 9, 2015; 4                               


Analysis of the pharmacological properties of chicken melanocortin-2 receptor (cMC2R) and chicken melanocortin-2 accessory protein 1 (cMRAP1)., Barlock TK, Gehr DT, Dores RM., Gen Comp Endocrinol. September 1, 2014; 205 260-7.


Multi-functional norrin is a ligand for the LGR4 receptor., Deng C, Reddy P, Cheng Y, Luo CW, Hsiao CL, Hsueh AJ., J Cell Sci. May 1, 2013; 126 (Pt 9): 2060-8.                                  


Secreted and transmembrane wnt inhibitors and activators., Cruciat CM, Niehrs C., Cold Spring Harb Perspect Biol. March 1, 2013; 5 (3): a015081.


Maternal xNorrin, a canonical Wnt signaling agonist and TGF-β antagonist, controls early neuroectoderm specification in Xenopus., Xu S, Cheng F, Liang J, Wu W, Zhang J., PLoS Biol. January 1, 2012; 10 (3): e1001286.                                    


An essential role of the cysteine-rich domain of FZD4 in Norrin/Wnt signaling and familial exudative vitreoretinopathy., Zhang K, Harada Y, Wei X, Shukla D, Rajendran A, Tawansy K, Bedell M, Lim S, Shaw PX, He X, Yang Z., J Biol Chem. March 25, 2011; 286 (12): 10210-5.


The NM23 family in development., Bilitou A, Watson J, Gartner A, Ohnuma S., Mol Cell Biochem. September 1, 2009; 329 (1-2): 17-33.


Wnt/beta-catenin signaling: components, mechanisms, and diseases., MacDonald BT, Tamai K, He X., Dev Cell. July 1, 2009; 17 (1): 9-26.          


Mutational analysis of Norrin-Frizzled4 recognition., Smallwood PM, Williams J, Xu Q, Leahy DJ, Nathans J., J Biol Chem. February 9, 2007; 282 (6): 4057-68.


NDP kinase moves into developing primary cilia., Mitchell KA, Gallagher BC, Szabo G, Otero Ade S., Cell Motil Cytoskeleton. September 1, 2004; 59 (1): 62-73.


Regulation of TNF-alpha secretion by a specific melanocortin-1 receptor peptide agonist., Ignar DM, Andrews JL, Jansen M, Eilert MM, Pink HM, Lin P, Sherrill RG, Szewczyk JR, Conway JG., Peptides. May 1, 2003; 24 (5): 709-16.


Mutant frizzled-4 disrupts retinal angiogenesis in familial exudative vitreoretinopathy., Robitaille J, MacDonald ML, Kaykas A, Sheldahl LC, Zeisler J, Dubé MP, Zhang LH, Singaraja RR, Guernsey DL, Zheng B, Siebert LF, Hoskin-Mott A, Trese MT, Pimstone SN, Shastry BS, Moon RT, Hayden MR, Goldberg YP, Samuels ME., Nat Genet. October 1, 2002; 32 (2): 326-30.


Murine cerberus homologue mCer-1: a candidate anterior patterning molecule., Biben C, Stanley E, Fabri L, Kotecha S, Rhinn M, Drinkwater C, Lah M, Wang CC, Nash A, Hilton D, Ang SL, Mohun T, Harvey RP., Dev Biol. February 15, 1998; 194 (2): 135-51.    


Copurification of vimentin, energy metabolism enzymes, and a MER5 homolog with nucleoside diphosphate kinase. Identification of tissue-specific interactions., Otero AS., J Biol Chem. June 6, 1997; 272 (23): 14690-4.


A nucleoside diphosphate kinase from Paramecium tetraurelia with protein kinase activity., Ann KS, Nelson DL., J Eukaryot Microbiol. January 1, 1996; 43 (5): 365-72.


Isolation of large quantities of functional, cytoplasm-free Xenopus laevis oocyte nuclei., Lehman CW, Carroll D., Anal Biochem. June 1, 1993; 211 (2): 311-9.


Nucleoside diphosphate kinase from Xenopus oocytes; partial purification and characterization., Buczynski G, Potter RL., Biochim Biophys Acta. December 5, 1990; 1041 (3): 296-304.

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