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Effects of nonylphenols on embryonic development and metamorphosis of Xenopus laevis: FETAX and amphibian metamorphosis toxicity test (OECD TG231). , Xu Y , Xu Y ., Environ Res. July 1, 2019; 174 14-23.
What are the roles of retinoids, other morphogens, and Hox genes in setting up the vertebrate body axis? , Durston AJ ., Genesis. July 1, 2019; 57 (7-8): e23296.
PDGF-B: The missing piece in the mosaic of PDGF family role in craniofacial development. , Corsinovi D., Dev Dyn. July 1, 2019; 248 (7): 603-612.
Encephalopathies with KCNC1 variants: genotype-phenotype-functional correlations. , Cameron JM ., Ann Clin Transl Neurol. July 1, 2019; 6 (7): 1263-1272.
Importance of the Choice of a Recombinant System to Produce Large Amounts of Functional Membrane Protein hERG. , Vasseur L., Int J Mol Sci. June 28, 2019; 20 (13):
The Spatiotemporal Control of Zygotic Genome Activation. , Gentsch GE ., iScience. June 28, 2019; 16 485-498.
Using a continuum model to decipher the mechanics of embryonic tissue spreading from time-lapse image sequences: An approximate Bayesian computation approach. , Stepien TL., PLoS One. June 19, 2019; 14 (6): e0218021.
Desmoplakin is required for epidermal integrity and morphogenesis in the Xenopus laevis embryo. , Bharathan NK., Dev Biol. June 15, 2019; 450 (2): 115-131.
Endodermal Maternal Transcription Factors Establish Super-Enhancers during Zygotic Genome Activation. , Paraiso KD ., Cell Rep. June 4, 2019; 27 (10): 2962-2977.e5.
The HRP3 PWWP domain recognizes the minor groove of double-stranded DNA and recruits HRP3 to chromatin. , Tian W., Nucleic Acids Res. June 4, 2019; 47 (10): 5436-5448.
Special Considerations for Making Explants and Transplants with Xenopus tropicalis. , Fisher M ., Cold Spring Harb Protoc. June 3, 2019; 2019 (6):
Molecular evidence of sequential evolution of DDT- and pyrethroid-resistant sodium channel in Aedes aegypti. , Chen M., PLoS Negl Trop Dis. June 3, 2019; 13 (6): e0007432.
Data demonstrating distinct embryonic developmental defects induced by bisphenol a alternatives. , Arancio AL., Data Brief. June 3, 2019; 25 104091.
GTP binding protein 10 is a member of the OBG family of proteins and is differentially expressed in the early Xenopus embryo. , Jerry R., Gene Expr Patterns. June 1, 2019; 32 12-17.
A unique role of thyroid hormone receptor β in regulating notochord resorption during Xenopus metamorphosis. , Nakajima K ., Gen Comp Endocrinol. June 1, 2019; 277 66-72.
Evolution of the Rho guanine nucleotide exchange factors Kalirin and Trio and their gene expression in Xenopus development. , Kratzer MC., Gene Expr Patterns. June 1, 2019; 32 18-27.
New roles for Wnt and BMP signaling in neural anteroposterior patterning. , Polevoy H., EMBO Rep. June 1, 2019; 20 (6):
Loss of function of Kmt2d, a gene mutated in Kabuki syndrome, affects heart development in Xenopus laevis. , Schwenty-Lara J., Dev Dyn. June 1, 2019; 248 (6): 465-476.
Mechanistic insights from the LHX1-driven molecular network in building the embryonic head. , McMahon R., Dev Growth Differ. June 1, 2019; 61 (5): 327-336.
Mechanical strain, novel genes and evolutionary insights: news from the frog left- right organizer. , Blum M ., Curr Opin Genet Dev. June 1, 2019; 56 8-14.
Identification of a regeneration-organizing cell in the Xenopus tail. , Aztekin C ., Science. May 17, 2019; 364 (6441): 653-658.
ANK2 functionally interacts with KCNH2 aggravating long QT syndrome in a double mutation carrier. , Gessner G., Biochem Biophys Res Commun. May 14, 2019; 512 (4): 845-851.
Peroxiredoxin5 Controls Vertebrate Ciliogenesis by Modulating Mitochondrial Reactive Oxygen Species. , Ji Y., Antioxid Redox Signal. May 10, 2019; 30 (14): 1731-1745.
A dual function of FGF signaling in Xenopus left- right axis formation. , Schneider I., Development. May 10, 2019; 146 (9):
The Wnt inhibitor Dkk1 is required for maintaining the normal cardiac differentiation program in Xenopus laevis. , Guo Y., Dev Biol. May 1, 2019; 449 (1): 1-13.
FoxN3 is necessary for the development of the interatrial septum, the ventricular trabeculae and the muscles at the head/trunk interface in the African clawed frog, Xenopus laevis (Lissamphibia: Anura: Pipidae). , Naumann B., Dev Dyn. May 1, 2019; 248 (5): 323-336.
Agr2-interacting Prod1-like protein Tfp4 from Xenopus laevis is necessary for early forebrain and eye development as well as for the tadpole appendage regeneration. , Tereshina MB., Genesis. May 1, 2019; 57 (5): e23293.
Novel functions of the ubiquitin-independent proteasome system in regulating Xenopus germline development. , Hwang H., Development. April 23, 2019; 146 (8):
Modular Architecture of the STING C-Terminal Tail Allows Interferon and NF-κB Signaling Adaptation. , de Oliveira Mann CC., Cell Rep. April 23, 2019; 27 (4): 1165-1175.e5.
A Novel Aquaporin 12-like Protein from Chilo suppressalis: Characterization and Functional Analysis. , Lu MX., Genes (Basel). April 21, 2019; 10 (4):
Visualizing flow in an intact CSF network using optical coherence tomography: implications for human congenital hydrocephalus. , Date P., Sci Rep. April 17, 2019; 9 (1): 6196.
Calcium Activity Dynamics Correlate with Neuronal Phenotype at a Single Cell Level and in a Threshold-Dependent Manner. , Paudel S., Int J Mol Sci. April 16, 2019; 20 (8):
Microtubule end conversion mediated by motors and diffusing proteins with no intrinsic microtubule end-binding activity. , Chakraborty M., Nat Commun. April 11, 2019; 10 (1): 1673.
A Tail-Based Mechanism Drives Nucleosome Demethylation by the LSD2/NPAC Multimeric Complex. , Marabelli C., Cell Rep. April 9, 2019; 27 (2): 387-399.e7.
Myelopoiesis of the Amphibian Xenopus laevis Is Segregated to the Bone Marrow, Away From Their Hematopoietic Peripheral Liver. , Yaparla A., Front Immunol. April 4, 2019; 10 3015.
The electrical block to polyspermy induced by an intracellular Ca2+ increase at fertilization of the clawed frogs, Xenopus laevis and Xenopus tropicalis. , Watabe M., Mol Reprod Dev. April 1, 2019; 86 (4): 387-403.
Developmental regulation of Wnt signaling by Nagk and the UDP-GlcNAc salvage pathway. , Neitzel LR., Mech Dev. April 1, 2019; 156 20-31.
Prdm12 Directs Nociceptive Sensory Neuron Development by Regulating the Expression of the NGF Receptor TrkA. , Desiderio S., Cell Rep. March 26, 2019; 26 (13): 3522-3536.e5.
Whole-Cell Photoacoustic Sensor Based on Pigment Relocalization. , Lauri A., ACS Sens. March 22, 2019; 4 (3): 603-612.
Developmental expression of three prmt genes in Xenopus. , Wang CD , Wang CD , Wang CD ., Zool Res. March 18, 2019;
Leukemia inhibitory factor signaling in Xenopus embryo: Insights from gain of function analysis and dominant negative mutant of the receptor. , Jalvy S., Dev Biol. March 15, 2019; 447 (2): 200-213.
A stable tetramer is not the only oligomeric state that mitochondrial single-stranded DNA binding proteins can adopt. , Singh SP., J Biol Chem. March 15, 2019; 294 (11): 4137-4144.
Mechanism of Cross-talk between H2B Ubiquitination and H3 Methylation by Dot1L. , Worden EJ., Cell. March 7, 2019; 176 (6): 1490-1501.e12.
Etv6 activates vegfa expression through positive and negative transcriptional regulatory networks in Xenopus embryos. , Li L., Nat Commun. March 6, 2019; 10 (1): 1083.
The connexin26 human mutation N14K disrupts cytosolic intersubunit interactions and promotes channel opening. , Valdez Capuccino JM., J Gen Physiol. March 4, 2019; 151 (3): 328-341.
Paracetamol-induced liver injury modelled in Xenopus laevis embryos. , Saide K., Toxicol Lett. March 1, 2019; 302 83-91.
Bisphenol A, Bisphenol AF, di-n-butyl phthalate, and 17β-estradiol have shared and unique dose-dependent effects on early embryo cleavage divisions and development in Xenopus laevis. , Arancio AL., Reprod Toxicol. March 1, 2019; 84 65-74.
Katanin catalyzes microtubule depolymerization independently of tubulin C-terminal tails. , Belonogov L., Cytoskeleton (Hoboken). March 1, 2019; 76 (3): 254-268.
TMEM266 is a functional voltage sensor regulated by extracellular Zn2. , Papp F., Elife. February 27, 2019; 8
Human Pluripotent Stem Cell-Derived Neural Crest Cells for Tissue Regeneration and Disease Modeling. , Srinivasan A., Front Mol Neurosci. February 22, 2019; 12 39.