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Discovering novel phenotypes with automatically inferred dynamic models: a partial melanocyte conversion in Xenopus., Lobo D, Lobikin M, Levin M., Sci Rep. January 27, 2017; 7 41339.          


Distortion of histone octamer core promotes nucleosome mobilization by a chromatin remodeler., Sinha KK, Gross JD, Narlikar GJ., Science. January 20, 2017; 355 (6322):


Developmental changes in head movement kinematics during swimming in Xenopus laevis tadpoles., Hänzi S, Straka H., J Exp Biol. January 15, 2017; 220 (Pt 2): 227-236.


Differences in mobility at the range edge of an expanding invasive population of Xenopus laevis in the west of France., Louppe V, Courant J, Herrel A., J Exp Biol. January 15, 2017; 220 (Pt 2): 278-283.


Direct activation of GABAA receptors by substances in the organic acid fraction of Japanese sake., Izu H, Shigemori K, Eguchi M, Kawane S, Fujii S, Kitamura Y, Aoshima H, Yamada Y., Food Chem. January 1, 2017; 214 354-359.


Developmental changes in drug-metabolizing enzyme expression during metamorphosis of Xenopus tropicalis., Mori J, Sanoh S, Kashiwagi K, Hanada H, Shigeta M, Suzuki KT, Yamamoto T, Kotake Y, Sugihara K, Kitamura S, Kashiwagi A, Ohta S., J Toxicol Sci. January 1, 2017; 42 (5): 605-613.


Dissecting structures and functions of SecA-only protein-conducting channels: ATPase, pore structure, ion channel activity, protein translocation, and interaction with SecYEG/SecDF•YajC., Hsieh YH, Huang YJ, Zhang H, Liu Q, Lu Y, Yang H, Houghton J, Jiang C, Sui SF, Tai PC., PLoS One. January 1, 2017; 12 (6): e0178307.              


Design of Light-Sensitive NMDARs by Genetically Encoded Photo-Cross-Linkers., Tian M, Ye S., Methods Mol Biol. January 1, 2017; 1677 185-197.


Development of the Larval Amphibian Growth and Development Assay: effects of chronic 4-tert-octylphenol or 17β-trenbolone exposure in Xenopus laevis from embryo to juvenile., Haselman JT, Kosian PA, Korte JJ, Olmstead AW, Iguchi T, Johnson RD, Degitz SJ., J Appl Toxicol. December 1, 2016; 36 (12): 1639-1650.


Development of the Larval Amphibian Growth and Development Assay: Effects of benzophenone-2 exposure in Xenopus laevis from embryo to juvenile., Haselman JT, Sakurai M, Watanabe N, Goto Y, Onishi Y, Ito Y, Onoda Y, Kosian PA, Korte JJ, Johnson RD, Iguchi T, Degitz SJ., J Appl Toxicol. December 1, 2016; 36 (12): 1651-1661.


Development of yeast reporter assays for the enhanced detection of environmental ligands of thyroid hormone receptors α and β from Xenopus tropicalis., Matsui S, Ito-Harashima S, Sugimoto Y, Takada E, Shiizaki K, Kawanishi M, Yagi T., Toxicol In Vitro. December 1, 2016; 37 15-24.


Developmental and Thyroid Hormone Regulation of the DNA Methyltransferase 3a Gene in Xenopus Tadpoles., Kyono Y, Sachs LM, Bilesimo P, Wen L, Denver RJ., Endocrinology. December 1, 2016; 157 (12): 4961-4972.


Direct reprogramming of fibroblasts into renal tubular epithelial cells by defined transcription factors., Kaminski MM, Tosic J, Kresbach C, Engel H, Klockenbusch J, Müller AL, Pichler R, Grahammer F, Kretz O, Huber TB, Walz G, Arnold SJ, Lienkamp SS., Nat Cell Biol. December 1, 2016; 18 (12): 1269-1280.                  


Dietary exposure to polybrominated diphenyl ether 47 (BDE-47) inhibits development and alters thyroid hormone-related gene expression in the brain of Xenopus laevis tadpoles., Yost AT, Thornton LM, Venables BJ, Sellin Jeffries MK., Environ Toxicol Pharmacol. December 1, 2016; 48 237-244.


Discrete Mesh Approach in Morphogenesis Modelling: the Example of Gastrulation., Demongeot J, Lontos A, Promayon E., Acta Biotheor. December 1, 2016; 64 (4): 427-446.


Development of Erythroid Progenitors under Erythropoietin Stimulation in Xenopus laevis Larval Liver., Okui T, Hosozawa S, Kohama S, Fujiyama S, Maekawa S, Muto H, Kato T., Zoolog Sci. December 1, 2016; 33 (6): 575-582.


Dominant KCNA2 mutation causes episodic ataxia and pharmacoresponsive epilepsy., Corbett MA, Bellows ST, Li M, Carroll R, Micallef S, Carvill GL, Myers CT, Howell KB, Maljevic S, Lerche H, Gazina EV, Mefford HC, Bahlo M, Berkovic SF, Petrou S, Scheffer IE, Gecz J., Neurology. November 8, 2016; 87 (19): 1975-1984.


Dysregulation of a potassium channel, THIK-1, targeted by caspase-8 accelerates cell shrinkage., Sakamaki K, Ishii TM, Sakata T, Takemoto K, Takagi C, Takeuchi A, Morishita R, Takahashi H, Nozawa A, Shinoda H, Chiba K, Sugimoto H, Saito A, Tamate S, Satou Y, Jung SK, Matsuoka S, Koyamada K, Sawasaki T, Nagai T, Ueno N., Biochim Biophys Acta. November 1, 2016; 1863 (11): 2766-2783.                                


Data on microRNAs and microRNA-targeted mRNAs in Xenopus ectoderm., Shah VV, Soibam B, Ritter RA, Benham A, Oomen J, Sater AK., Data Brief. October 14, 2016; 9 699-703.


Differential Inhibition of Water and Ion Channel Activities of Mammalian Aquaporin-1 by Two Structurally Related Bacopaside Compounds Derived from the Medicinal Plant Bacopa monnieri., Pei JV, Kourghi M, De Ieso ML, Campbell EM, Dorward HS, Hardingham JE, Yool AJ., Mol Pharmacol. October 1, 2016; 90 (4): 496-507.

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