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Wip1 regulates Smad4 phosphorylation and inhibits TGF-β signaling., Park DS, Yoon GH, Kim EY, Lee T, Kim K, Lee PC, Chang EJ, Choi SC., EMBO Rep. May 6, 2020; 21 (5): e48693.


Water-soluble variant of human Lynx1 positively modulates synaptic plasticity and ameliorates cognitive impairment associated with α7-nAChR dysfunction., Shenkarev ZO, Shulepko MA, Bychkov ML, Kulbatskii DS, Shlepova OV, Vasilyeva NA, Andreev-Andrievskiy AA, Popova AS, Lagereva EA, Loktyushov EV, Koshelev SG, Thomsen MS, Dolgikh DA, Kozlov SA, Balaban PM, Kirpichnikov MP, Lyukmanova EN., J Neurochem. March 29, 2020;


What lies beneath? Molecular evolution during the radiation of caecilian amphibians., Torres-Sánchez M, Gower DJ, Alvarez-Ponce D, Creevey CJ, Wilkinson M, San Mauro D., BMC Genomics. May 9, 2019; 20 (1): 354.      


WGDdetector: a pipeline for detecting whole genome duplication events using the genome or transcriptome annotations., Yang Y, Li Y, Chen Q, Sun Y, Lu Z., BMC Bioinformatics. February 13, 2019; 20 (1): 75.    


Whole-Cell Photoacoustic Sensor Based on Pigment Relocalization., Lauri A, Soliman D, Omar M, Stelzl A, Ntziachristos V, Westmeyer GG., ACS Sens. January 1, 2019; 4 (3): 603-612.            


What are the roles of retinoids, other morphogens, and Hox genes in setting up the vertebrate body axis?, Durston AJ., Genesis. January 1, 2019; 57 (7-8): e23296.            


We, the developing rete testis, efferent ducts, and Wolffian duct, all hereby agree that we need to connect., de Mello Santos T, Hinton BT., Andrology. January 1, 2019; 7 (5): 581-587.


Wolf-Hirschhorn Syndrome-Associated Genes Are Enriched in Motile Neural Crest Cells and Affect Craniofacial Development in Xenopus laevis., Mills A, Bearce E, Cella R, Kim SW, Selig M, Lee S, Lowery LA., Front Physiol. January 1, 2019; 10 431.                          


Where cone snails and spiders meet: design of small cyclic sodium-channel inhibitors., Peigneur S, Cheneval O, Maiti M, Leipold E, Heinemann SH, Lescrinier E, Herdewijn P, De Lima ME, Craik DJ, Schroeder CI, Tytgat J., FASEB J. January 1, 2019; 33 (3): 3693-3703.


Wall following in Xenopus laevis is barrier-driven., Hänzi S, Straka H., J Comp Physiol A Neuroethol Sens Neural Behav Physiol. January 1, 2018; 204 (2): 183-195.


Whole-Mount Immunocytochemistry in Xenopus., Klymkowsky MW., Cold Spring Harb Protoc. January 1, 2018; 2018 (1):


Whole-Mount Immunofluorescence for Visualizing Endogenous Protein and Injected RNA in Xenopus Oocytes., Jeschonek SP, Mowry KL., Cold Spring Harb Protoc. January 1, 2018; 2018 (10):


Whole-Mount In Situ Hybridization of Xenopus Oocytes., Bauermeister D, Pieler T., Cold Spring Harb Protoc. January 1, 2018; 2018 (3):


Water Contaminants Associated With Unconventional Oil and Gas Extraction Cause Immunotoxicity to Amphibian Tadpoles., Robert J, McGuire CC, Kim F, Nagel SC, Price SJ, Lawrence BP, De Jesús Andino F., Toxicol Sci. January 1, 2018; 166 (1): 39-50.


WDR5 Stabilizes Actin Architecture to Promote Multiciliated Cell Formation., Kulkarni SS, Griffin JN, Date PP, Liem KF, Khokha MK., Dev Cell. January 1, 2018; 46 (5): 595-610.e3.                              


WDR5 regulates left-right patterning via chromatin-dependent and -independent functions., Kulkarni SS, Khokha MK., Development. January 1, 2018; 145 (23):                 


Whole-Mount In Situ Hybridization of Xenopus Embryos., Saint-Jeannet JP., Cold Spring Harb Protoc. December 1, 2017; 2017 (12): pdb.prot097287.


WNT16 antagonises excessive canonical WNT activation and protects cartilage in osteoarthritis., Nalesso G, Thomas BL, Sherwood JC, Yu J, Addimanda O, Eldridge SE, Thorup AS, Dale L, Schett G, Zwerina J, Eltawil N, Pitzalis C, Dell'Accio F., Ann Rheum Dis. January 1, 2017; 76 (1): 218-226.              


What we can learn from a tadpole about ciliopathies and airway diseases: Using systems biology in Xenopus to study cilia and mucociliary epithelia., Walentek P, Quigley IK., Genesis. January 1, 2017; 55 (1-2):       


When size matters: transient receptor potential vanilloid 4 channel as a volume-sensor rather than an osmo-sensor., Toft-Bertelsen TL, Križaj D, MacAulay N., J Physiol. January 1, 2017; 595 (11): 3287-3302.


Wbp2nl has a developmental role in establishing neural and non-neural ectodermal fates., Marchak A, Grant PA, Neilson KM, Datta Majumdar H, Yaklichkin S, Johnson D, Moody SA., Dev Biol. January 1, 2017; 429 (1): 213-224.                    


Waterborne exposure to triadimefon causes thyroid endocrine disruption and developmental delay in Xenopus laevis tadpoles., Li M, Li S, Yao T, Zhao R, Wang Q, Zhu G., Aquat Toxicol. August 1, 2016; 177 190-7.


With no lysine L-WNK1 isoforms are negative regulators of the K+-Cl- cotransporters., Mercado A, de Los Heros P, Melo Z, Chávez-Canales M, Murillo-de-Ozores AR, Moreno E, Bazúa-Valenti S, Vázquez N, Hadchouel J, Gamba G., Am J Physiol Cell Physiol. January 1, 2016; 311 (1): C54-66.


Wide and high resolution tension measurement using FRET in embryo., Yamashita S, Tsuboi T, Ishinabe N, Kitaguchi T, Michiue T., Sci Rep. January 1, 2016; 6 28535.          


Wnt proteins can direct planar cell polarity in vertebrate ectoderm., Chu CW, Sokol SY., Elife. January 1, 2016; 5             


WNK3 Kinase Enhances the Sodium Chloride Cotransporter Expression via an ERK 1/2 Signaling Pathway., Wang D, Zhang Y, Han J, Pan S, Xu N, Feng X, Zhuang Z, Caroti C, Zhuang J, Hoover RS, Gu D, Zeng Q, Cai H., Nephron. January 1, 2016; 133 (4): 287-95.


Wnt/Wingless Pathway Activation Is Promoted by a Critical Threshold of Axin Maintained by the Tumor Suppressor APC and the ADP-Ribose Polymerase Tankyrase., Wang Z, Tacchelly-Benites O, Yang E, Thorne CA, Nojima H, Lee E, Ahmed Y., Genetics. January 1, 2016; 203 (1): 269-81.


What is the DNA repair defect underlying Fanconi anemia?, Duxin JP, Walter JC., Curr Opin Cell Biol. December 1, 2015; 37 49-60.


Whole-genome sequence of the Tibetan frog Nanorana parkeri and the comparative evolution of tetrapod genomes., Sun YB, Xiong ZJ, Xiang XY, Liu SP, Zhou WW, Tu XL, Zhong L, Wang L, Wu DD, Zhang BL, Zhu CL, Yang MM, Chen HM, Li F, Zhou L, Feng SH, Huang C, Zhang GJ, Irwin D, Hillis DM, Murphy RW, Yang HM, Che J, Wang J, Zhang YP., Proc Natl Acad Sci U S A. March 17, 2015; 112 (11): E1257-62.      


WNK-SPAK-NCC cascade revisited: WNK1 stimulates the activity of the Na-Cl cotransporter via SPAK, an effect antagonized by WNK4., Chávez-Canales M, Zhang C, Soukaseum C, Moreno E, Pacheco-Alvarez D, Vidal-Petiot E, Castañeda-Bueno M, Vázquez N, Rojas-Vega L, Meermeier NP, Rogers S, Jeunemaitre X, Yang CL, Ellison DH, Gamba G, Hadchouel J., Hypertension. November 1, 2014; 64 (5): 1047-53.


WNK3 abrogates the NEDD4-2-mediated inhibition of the renal Na+-Cl- cotransporter., Lagnaz D, Arroyo JP, Chávez-Canales M, Vázquez N, Rizzo F, Spirlí A, Debonneville A, Staub O, Gamba G., Am J Physiol Renal Physiol. August 1, 2014; 307 (3): F275-86.


WLS retrograde transport to the endoplasmic reticulum during Wnt secretion., Yu J, Chia J, Canning CA, Jones CM, Bard FA, Virshup DM., Dev Cell. May 12, 2014; 29 (3): 277-91.  


What''s that gene (or protein)? Online resources for exploring functions of genes, transcripts, and proteins., Hutchins JR., Mol Biol Cell. April 1, 2014; 25 (8): 1187-201.    


Wnt-dependent osteogenic commitment of bone marrow stromal cells using a novel GSK3β inhibitor., Cook DA, Fellgett SW, Pownall ME, O'Shea PJ, Genever PG., Stem Cell Res. March 1, 2014; 12 (2): 415-27.


Wiring the retinal circuits activated by light during early development., Bertolesi GE, Hehr CL, McFarlane S., Neural Dev. February 13, 2014; 9 3.              


Wnt signaling and cell-matrix adhesion., Astudillo P, Larraín J., Curr Mol Med. February 1, 2014; 14 (2): 209-20.


WAVE regulatory complex activation., Hume PJ, Humphreys D, Koronakis V., Methods Enzymol. January 1, 2014; 540 363-79.


Wave pinning and spatial patterning in a mathematical model of Antivin/Lefty-Nodal signalling., Middleton AM, King JR, Loose M., J Math Biol. December 1, 2013; 67 (6-7): 1393-424.


When size does matter: organelle size influences the properties of transport mediated by molecular motors., De Rossi MC, Bruno L, Wolosiuk A, Despósito MA, Levi V., Biochim Biophys Acta. November 1, 2013; 1830 (11): 5095-103.


WNK4 inhibits Ca(2+)-activated big-conductance potassium channels (BK) via mitogen-activated protein kinase-dependent pathway., Yue P, Zhang C, Lin DH, Sun P, Wang WH., Biochim Biophys Acta. October 1, 2013; 1833 (10): 2101-10.


WNK4 inhibition of ENaC is independent of Nedd4-2-mediated ENaC ubiquitination., Yu L, Cai H, Yue Q, Alli AA, Wang D, Al-Khalili O, Bao HF, Eaton DC., Am J Physiol Renal Physiol. July 1, 2013; 305 (1): F31-41.


WNK4 is an essential effector of anterior formation in FGF signaling., Shimizu M, Goto T, Sato A, Shibuya H., Genes Cells. June 1, 2013; 18 (6): 442-9.        


Wnt stabilization of β-catenin reveals principles for morphogen receptor-scaffold assemblies., Kim SE, Huang H, Zhao M, Zhang X, Zhang A, Semonov MV, MacDonald BT, Zhang X, Garcia Abreu J, Peng L, He X., Science. May 17, 2013; 340 (6134): 867-70.


Wnt signaling during cochlear development., Munnamalai V, Fekete DM., Semin Cell Dev Biol. May 1, 2013; 24 (5): 480-9.


Water and CO₂ permeability of SsAqpZ, the cyanobacterium Synechococcus sp. PCC7942 aquaporin., Ding X, Matsumoto T, Gena P, Liu C, Pellegrini-Calace M, Zhong S, Sun X, Zhu Y, Katsuhara M, Iwasaki I, Kitagawa Y, Calamita G., Biol Cell. March 1, 2013; 105 (3): 118-28.


WD40-repeat protein WDR18 collaborates with TopBP1 to facilitate DNA damage checkpoint signaling., Yan S, Willis J., Biochem Biophys Res Commun. February 15, 2013; 431 (3): 466-71.


Wnt signaling in normal and malignant hematopoiesis., Lento W, Congdon K, Voermans C, Kritzik M, Reya T., Cold Spring Harb Perspect Biol. February 1, 2013; 5 (2):


Wnt signaling in vertebrate axis specification., Hikasa H, Sokol SY., Cold Spring Harb Perspect Biol. January 1, 2013; 5 (1): a007955.


Wound healing in mammals and amphibians: toward limb regeneration in mammals., Kawasumi A, Sagawa N, Hayashi S, Yokoyama H, Tamura K., Curr Top Microbiol Immunol. January 1, 2013; 367 33-49.


Wnt11b is involved in cilia-mediated symmetry breakage during Xenopus left-right development., Walentek P, Schneider I, Schweickert A, Blum M., PLoS One. January 1, 2013; 8 (9): e73646.          

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