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Summary Expression Gene Literature (4065) GO Terms (0) Nucleotides (3) Proteins (1) Interactants (1092) Wiki
ECB--23180630

Papers associated with LOC115919910 (and LOC574780)



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Frondoside A Enhances the Anti-Cancer Effects of Oxaliplatin and 5-Fluorouracil on Colon Cancer Cells., Attoub S, Arafat K, Khalaf T, Sulaiman S, Iratni R., Nutrients. 10 (5):             


Chronic exposure to diesel particles worsened emphysema and increased M2-like phenotype macrophages in a PPE-induced model., Moreira AR, Pereira de Castro TB, Kohler JB, Ito JT, de França Silva LE, Lourenço JD, Almeida RR, Santana FR, Brito JM, Rivero DHRF, Vale MICA, Prado CM, Câmara NOS, Saldiva PHN, Olivo CR., PLoS One. January 7, 2020; 15 (1): e0228393.            


Polysaccharide enhanced NK cell cytotoxicity against pancreatic cancer via TLR4/MAPKs/NF-κB pathway in vitro/vivo., Xie X, Ma L, Zhou Y, Shen W, Xu D, Dou J, Shen B, Zhou C., Carbohydr Polym. December 1, 2019; 225 115223.


Stiehopus japonieus acidic mucopolysaccharide inhibits the proliferation of pancreatic cancer SW1990 cells through Hippo-YAP pathway., Li X, Liu Y, Zhang C, Niu Q, Wang H, Che C, Xie M, Zhou B, Xu Y, Zhang Q, Wu J, Tian Z., Oncotarget. March 7, 2017; 8 (10): 16356-16366.      


A pancreatic exocrine-like cell regulatory circuit operating in the upper stomach of the sea urchin Strongylocentrotus purpuratus larva., Perillo M, Wang YJ, Leach SD, Arnone MI., BMC Evol Biol. May 26, 2016; 16 (1): 117.              


Fucoidan from Acaudina molpadioides protects pancreatic islet against cell apoptosis via inhibition of inflammation in type 2 diabetic mice., Wang J, Hu S, Wang J, Li S, Jiang W., Food Sci Biotechnol. February 29, 2016; 25 (1): 293-300.


Frondoside A enhances the antiproliferative effects of gemcitabine in pancreatic cancer., Al Shemaili J, Mensah-Brown E, Parekh K, Thomas SA, Attoub S, Hellman B, Nyberg F, Adem A, Collin P, Adrian TE., Eur J Cancer. May 1, 2014; 50 (7): 1391-8.


Photoaffinity labeling of nicotinic acid adenine dinucleotide phosphate (NAADP) targets in mammalian cells., Lin-Moshier Y, Walseth TF, Churamani D, Davidson SM, Slama JT, Hooper R, Brailoiu E, Patel S, Marchant JS., J Biol Chem. January 20, 2012; 287 (4): 2296-307.


Frondoside A inhibits human breast cancer cell survival, migration, invasion and the growth of breast tumor xenografts., Al Marzouqi N, Iratni R, Nemmar A, Arafat K, Ahmed Al Sultan M, Yasin J, Collin P, Mester J, Adrian TE, Attoub S., Eur J Pharmacol. October 1, 2011; 668 (1-2): 25-34.


Anti-pancreatic cancer effects of a polar extract from the edible sea cucumber, Cucumaria frondosa., Roginsky AB, Ding XZ, Woodward C, Ujiki MB, Singh B, Bell RH, Collin P, Adrian TE., Pancreas. July 1, 2010; 39 (5): 646-52.


Purified TPC isoforms form NAADP receptors with distinct roles for Ca(2+) signaling and endolysosomal trafficking., Ruas M, Rietdorf K, Arredouani A, Davis LC, Lloyd-Evans E, Koegel H, Funnell TM, Morgan AJ, Ward JA, Watanabe K, Cheng X, Churchill GC, Zhu MX, Platt FM, Wessel GM, Parrington J, Galione A., Curr Biol. April 27, 2010; 20 (8): 703-9.        


Review of the apoptosis pathways in pancreatic cancer and the anti-apoptotic effects of the novel sea cucumber compound, Frondoside A., Li X, Roginsky AB, Ding XZ, Woodward C, Collin P, Newman RA, Bell RH, Adrian TE., Ann N Y Acad Sci. September 1, 2008; 1138 181-98.


Refinement of a radioreceptor binding assay for nicotinic acid adenine dinucleotide phosphate., Lewis AM, Masgrau R, Vasudevan SR, Yamasaki M, O'Neill JS, Garnham C, James K, Macdonald A, Ziegler M, Galione A, Churchill GC., Anal Biochem. December 1, 2007; 371 (1): 26-36.                    


Molecular characterization of a novel intracellular ADP-ribosyl cyclase., Churamani D, Boulware MJ, Geach TJ, Martin AC, Moy GW, Su YH, Vacquier VD, Marchant JS, Dale L, Patel S., PLoS One. August 29, 2007; 2 (8): e797.                  


Cell-permeant small-molecule modulators of NAADP-mediated Ca2+ release., Dowden J, Berridge G, Moreau C, Yamasaki M, Churchill GC, Potter BV, Galione A., Chem Biol. June 1, 2006; 13 (6): 659-65.


Role of NAADP and cADPR in the induction and maintenance of agonist-evoked Ca2+ spiking in mouse pancreatic acinar cells., Yamasaki M, Thomas JM, Churchill GC, Garnham C, Lewis AM, Cancela JM, Patel S, Galione A., Curr Biol. May 10, 2005; 15 (9): 874-8.


Purification of a fibrinolytic enzyme (myulchikinase) from pickled anchovy and its cytotoxicity to the tumor cell lines., Jeong YK, Yang WS, Kim KH, Chung KT, Joo WH, Kim JH, Kim DE, Park JU., Biotechnol Lett. March 1, 2004; 26 (5): 393-7.


Protection from pancreatitis by the zymogen granule membrane protein integral membrane-associated protein-1., Imamura T, Asada M, Vogt SK, Rudnick DA, Lowe ME, Muglia LJ., J Biol Chem. December 27, 2002; 277 (52): 50725-33.


Immunohistochemical validation of a novel epithelial and a novel stromal marker of pancreatic ductal adenocarcinoma identified by global expression microarrays: sea urchin fascin homolog and heat shock protein 47., Maitra A, Iacobuzio-Donahue C, Rahman A, Sohn TA, Argani P, Meyer R, Yeo CJ, Cameron JL, Goggins M, Kern SE, Ashfaq R, Hruban RH, Wilentz RE., Am J Clin Pathol. July 1, 2002; 118 (1): 52-9.


Nicotinic acid adenine dinucleotide phosphate: a new intracellular second messenger?, Chini EN, De Toledo FG., Am J Physiol Cell Physiol. June 1, 2002; 282 (6): C1191-8.


Role of Ins(1,4,5)P3, cADP-ribose and nicotinic acid-adenine dinucleotide phosphate in Ca2+ signalling in mouse submandibular acinar cells., Harmer AR, Gallacher DV, Smith PM., Biochem J. February 1, 2001; 353 (Pt 3): 555-60.


Intracellular Ca(2+) release mechanisms: multiple pathways having multiple functions within the same cell type?, da Silva CP, Guse AH., Biochim Biophys Acta. December 20, 2000; 1498 (2-3): 122-33.


The pathogenesis of autosomal dominant polycystic kidney disease: an update., Somlo S, Markowitz GS., Curr Opin Nephrol Hypertens. July 1, 2000; 9 (4): 385-94.


Nicotinic acid adenine dinucleotide phosphate-induced Ca(2+) release. Interactions among distinct Ca(2+) mobilizing mechanisms in starfish oocytes., Santella L, Kyozuka K, Genazzani AA, De Riso L, Carafoli E., J Biol Chem. March 24, 2000; 275 (12): 8301-6.


Cyclic ADP-ribose: a novel Ca2+-mobilising second messenger., Guse AH., Cell Signal. May 1, 1999; 11 (5): 309-16.


The role of calcium on the activity of ERcalcistorin/protein-disulfide isomerase and the significance of the C-terminal and its calcium binding. A comparison with mammalian protein-disulfide isomerase., Lucero HA, Kaminer B., J Biol Chem. January 29, 1999; 274 (5): 3243-51.


Increased amounts of a high molecular weight insulin-like growth factor II (IGF-II) peptide and IGF-II messenger ribonucleic acid in pancreatic islets of diabetic Goto-Kakizaki rats., Höög A, Sandberg-Nordqvist AC, Abdel-Halim SM, Carlsson-Skwirut C, Guenifi A, Tally M, Ostenson CG, Falkmer S, Sara VR, Efendić S, Schalling M, Grimelius L., Endocrinology. June 1, 1996; 137 (6): 2415-23.


A cADP-ribose antagonist does not inhibit secretagogue-, caffeine- and nitric oxide-induced Ca2+ responses in rat pancreatic beta-cells., Willmott NJ, Galione A, Smith PA., Cell Calcium. November 1, 1995; 18 (5): 411-9.


Preserved beta-cell density in the endocrine pancreas of young, spontaneously diabetic Goto-Kakizaki (GK) rats., Guenifi A, Abdel-Halim SM, Höög A, Falkmer S, Ostenson CG., Pancreas. March 1, 1995; 10 (2): 148-53.


Cyclic ADP-ribose, the ADP-ribosyl cyclase pathway and calcium signalling., Galione A., Mol Cell Endocrinol. January 1, 1994; 98 (2): 125-31.

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