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Summary Expression Gene Literature (52) GO Terms (0) Nucleotides (37) Proteins (23) Interactants (120) Wiki
ECB-GENEPAGE-23080151

Papers associated with clcn2



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The polymerization of actin: its role in the generation of the acrosomal process of certain echinoderm sperm., Tilney LG, Hatano S, Ishikawa H, Mooseker MS., J Cell Biol. October 1, 1973; 59 (1): 109-26.


An elastic protein from the cortical layer of the sea-urchin egg., Maruyama K, Mabuchi I, Matsubara S, Ohashi K., Biochim Biophys Acta. September 28, 1976; 446 (1): 321-4.


Cs(+) causes a voltage-dependent block of inward K currents in resting skeletal muscle fibres., Gay LA, Stanfield PR., Nature. May 12, 1977; 267 (5607): 169-70.


The effect of myosin antibody on the division of starfish blastomeres., Mabuchi I, Okuno M., J Cell Biol. July 1, 1977; 74 (1): 251-63.


Evidence suggesting the presence of common antigenic determinant between dynein and tubulin., Nishino Y, Watanabe Y., Biochim Biophys Acta. July 22, 1977; 493 (1): 104-14.


Calcium-binding modulator protein from the unfertilized egg of the sea urchin Arbacia punctulata., Head JF, Mader S, Kaminer B., J Cell Biol. January 1, 1979; 80 (1): 211-8.


Distribution of fluorescently labeled actin in living sea urchin eggs during early development., Wang YL, Taylor DL., J Cell Biol. June 1, 1979; 81 (3): 672-9.


Purification and properties of soluble actin from sea urchin eggs., Mabuchi I, Spudich JA., J Biochem. March 1, 1980; 87 (3): 785-802.


Interaction of calcium and calmodulin in the presence of sodium dodecyl sulfate., Burgess WH, Jemiolo DK, Kretsinger RH., Biochim Biophys Acta. June 26, 1980; 623 (2): 257-70.


A DNase I binding/immunoprecipitation assay for actin., Snabes MC, Boyd AE, Pardue RL, Bryan J., J Biol Chem. June 25, 1981; 256 (12): 6291-5.


Purification and characterization of actinogelin, a calcium-sensitive actin-accessory protein, from rat liver., Kuo PF, Mimura N, Asano A., Eur J Biochem. July 1, 1982; 125 (2): 277-82.


Modifier role of internal H+ in activating the Na+-H+ exchanger in renal microvillus membrane vesicles., Aronson PS, Nee J, Suhm MA., Nature. September 9, 1982; 299 (5879): 161-3.


Creatine kinase role in anaphase chromosome movement., Cande WZ., Nature. August 1, 1983; 304 (5926): 557-8.


Flagellar motility requires the cAMP-dependent phosphorylation of a heat-stable NP-40-soluble 56 kd protein, axokinin., Tash JS, Kakar SS, Means AR., Cell. September 1, 1984; 38 (2): 551-9.


NAD+ kinase--a review., McGuinness ET, Butler JR., Int J Biochem. January 1, 1985; 17 (1): 1-11.


Alpha-actinin from sea urchin eggs: biochemical properties, interaction with actin, and distribution in the cell during fertilization and cleavage., Mabuchi I, Hamaguchi Y, Kobayashi T, Hosoya H, Tsukita S, Tsukita S., J Cell Biol. February 1, 1985; 100 (2): 375-83.


The effects of a 45 000 molecular weight protein from unfertilized sea urchin eggs and its 1:1 actin complex on actin filaments., Coluccio LM, Sedlar PA, Bryan J., J Muscle Res Cell Motil. April 1, 1986; 7 (2): 133-41.


Calmodulin-binding protein (55K + 17K) of sea urchin eggs has a Ca2+- and calmodulin-dependent phosphoprotein phosphatase activity., Iwasa F, Ishiguro K., J Biochem. May 1, 1986; 99 (5): 1353-8.


Mitosis in sand dollar embryos is inhibited by antibodies directed against the calcium transport enzyme of muscle., Silver RB., Proc Natl Acad Sci U S A. June 1, 1986; 83 (12): 4302-6.


Improved method for mapping the binding site of an actin-binding protein in the actin sequence. Use of a site-directed antibody against the N-terminal region of actin as a probe of its N-terminus., Sutoh K, Mabuchi I., Biochemistry. October 7, 1986; 25 (20): 6186-92.


Ultrastructural localization of intracellular calcium stores by a new cytochemical method., Poenie M, Epel D., J Histochem Cytochem. September 1, 1987; 35 (9): 939-56.


A novel actin filament-capping protein from sea urchin eggs: a 20,000-molecular-weight protein-actin complex., Ishidate S, Mabuchi I., J Biochem. July 1, 1988; 104 (1): 72-80.


Myosin heavy chain accumulates in dissimilar cell types of the macromere lineage in the sea urchin embryo., Wessel GM, Zhang W, Klein WH., Dev Biol. August 1, 1990; 140 (2): 447-54.


Cortical localization of a calcium release channel in sea urchin eggs., McPherson SM, McPherson PS, Mathews L, Campbell KP, Longo FJ., J Cell Biol. March 1, 1992; 116 (5): 1111-21.


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


Intracellular alkalinization enhances inward rectifier K+ current in retinal horizontal cells of catfish., Takahashi K, Copenhagen DR., Zoolog Sci. February 1, 1995; 12 (1): 29-34.


Phosphorylation of the carboxyl terminal region of dystrophin by mitogen-activated protein (MAP) kinase., Shemanko CS, Sanghera JS, Milner RE, Pelech S, Michalak M., Mol Cell Biochem. November 8, 1995; 152 (1): 63-70.


Beta-thymosins from marine invertebrates: primary structure and interaction with actin., Safer D, Chowrashi PK., Cell Motil Cytoskeleton. January 1, 1997; 38 (2): 163-71.


Effect of estrogen upon cyclic ADP ribose metabolism: beta-estradiol stimulates ADP ribosyl cyclase in rat uterus., Chini EN, de Toledo FG, Thompson MA, Dousa TP., Proc Natl Acad Sci U S A. May 27, 1997; 94 (11): 5872-6.


Nicotinic acetylcholine receptors of the neuronal type occur in the plasma membrane of sea urchin eggs., Ivonnet PI, Chambers EL., Zygote. August 1, 1997; 5 (3): 277-87.


Coding sequence, chromosomal localization, and expression pattern of Nrf1: the mouse homolog of Drosophila erect wing., Schaefer L, Engman H, Miller JB., Mamm Genome. February 1, 2000; 11 (2): 104-10.


Catalytic activity and heat production by the Ca(2+)-ATPase from sea cucumber (Ludwigothurea grisea) longitudinal smooth muscle: modulation by monovalent cations., Landeira-Fernandez AM, Galina A, de Meis L., J Exp Biol. December 1, 2000; 203 (Pt 23): 3613-9.


Identification of a novel apolipoprotein, ApoN, in ovarian follicular fluid., O'Bryan MK, Foulds LM, Cannon JF, Winnall WR, Muir JA, Sebire K, Smith AI, Keah HH, Hearn MT, de Kretser DM, Hedger MP., Endocrinology. November 1, 2004; 145 (11): 5231-42.


Ca2+-transport in sea urchin unfertilized eggs: regulation by endogenous sulfated polysaccharides and K+., Landeira-Fernandez AM, Aquino RS, Mourão PA, de Meis L., Biochim Biophys Acta. October 1, 2006; 1760 (10): 1529-35.


Enhanced transgene expression in the mouse skeletal muscle infected by the adeno-associated viral vector with the human elongation factor 1alpha promoter and a human chromatin insulator., Mori-Uchino M, Takeuchi T, Murakami I, Yano T, Yasugi T, Taketani Y, Nakagawa K, Kanda T., J Gene Med. July 1, 2009; 11 (7): 598-604.


Three distinct sarcomeric patterns of skeletal muscle revealed by SHG and TPEF microscopy., Recher G, Rouède D, Richard P, Simon A, Bellanger JJ, Tiaho F., Opt Express. October 26, 2009; 17 (22): 19763-77.


Global characterization of interferon regulatory factor (IRF) genes in vertebrates: glimpse of the diversification in evolution., Huang B, Qi ZT, Xu Z, Nie P., BMC Immunol. May 5, 2010; 11 22.                                                    


Calbindin-D32k is localized to a subpopulation of neurons in the nervous system of the sea cucumber Holothuria glaberrima (Echinodermata)., Díaz-Balzac CA, Lázaro-Peña MI, García-Rivera EM, González CI, García-Arrarás JE., PLoS One. January 1, 2012; 7 (3): e32689.                


Fucosylated chondroitin sulfate from Acaudina molpadioides improves hyperglycemia via activation of PKB/GLUT4 signaling in skeletal muscle of insulin resistant mice., Hu S, Chang Y, Wang J, Xue C, Shi D, Xu H, Wang Y., Food Funct. November 1, 2013; 4 (11): 1639-46.


Sea lily muscle lacks a troponin-regulatory system, while it contains paramyosin., Obinata T, Amemiya S, Takai R, Ichikawa M, Toyoshima YY, Sato N., Zoolog Sci. March 1, 2014; 31 (3): 122-8.


Fucosylated chondroitin sulfate from sea cucumber improves insulin sensitivity via activation of PI3K/PKB pathway., Hu S, Chang Y, He M, Wang J, Wang Y, Xue C., J Food Sci. July 1, 2014; 79 (7): H1424-9.


Palmitoleic acid (n-7) increases white adipocytes GLUT4 content and glucose uptake in association with AMPK activation., Bolsoni-Lopes A, Festuccia WT, Chimin P, Farias TS, Torres-Leal FL, Cruz MM, Andrade PB, Hirabara SM, Lima FB, Alonso-Vale MI., Lipids Health Dis. December 20, 2014; 13 199.          


Echinochrome A Improves Exercise Capacity during Short-Term Endurance Training in Rats., Seo DY, McGregor RA, Noh SJ, Choi SJ, Mishchenko NP, Fedoreyev SA, Stonik VA, Han J., Mar Drugs. September 8, 2015; 13 (9): 5722-31.      


Fucoidan from sea cucumber Cucumaria frondosa exhibits anti-hyperglycemic effects in insulin resistant mice via activating the PI3K/PKB pathway and GLUT4., Wang Y, Wang J, Zhao Y, Hu S, Shi D, Xue C., J Biosci Bioeng. January 1, 2016; 121 (1): 36-42.


Morphological and Biochemical Effects on the Skeletal Muscle of Ovariectomized Old Female Rats Submitted to the Intake of Diets with Vegetable or Animal Protein and Resistance Training., Figueiredo Braggion G, Ornelas E, Carmona Sattin Cury J, Edviges Alves Lima N, Aquino RC, Affonso Fonseca FL, Maifrino LB., Oxid Med Cell Longev. January 1, 2016; 2016 9251064.      


Fucoidan from sea cucumber may improve hepatic inflammatory response and insulin resistance in mice., Wang J, Hu S, Jiang W, Song W, Cai L, Wang J., Int Immunopharmacol. February 1, 2016; 31 15-23.


Evaluation of masticatory parameters in overweight and obese children., Araujo DS, Marquezin MC, Barbosa Tde S, Gavião MB, Castelo PM., Eur J Orthod. August 1, 2016; 38 (4): 393-7.


Assessment of the differences in masticatory behavior between male and female adolescents., Scudine KGO, Pedroni-Pereira A, Araujo DS, Prado DGA, Rossi AC, Castelo PM., Physiol Behav. September 1, 2016; 163 115-122.


Molecular characterization, expression analysis of the myostatin gene and its association with growth traits in sea cucumber (Apostichopus japonicus)., Li S, Zhou Z, Dong Y, Sun H, Gao S, Chen Z, Yang A, Liu W, Wang Q., Comp Biochem Physiol B Biochem Mol Biol. November 1, 2016; 201 12-20.


FoxO4 activity is regulated by phosphorylation and the cellular environment during dehydration in the African clawed frog, Xenopus laevis., Zhang Y, Luu BE, Storey KB., Biochim Biophys Acta Gen Subj. August 1, 2018; 1862 (8): 1721-1728.

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