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An early midbrain sensorimotor pathway is involved in the timely initiation and direction of swimming in the hatchling Xenopus laevis tadpole. , Larbi MC., Front Neural Circuits. January 1, 2022; 16 1027831.
Evi5 is required for Xenopus limb and tail regeneration. , Yang L., Front Cell Dev Biol. January 1, 2022; 10 1027666.
Microplastics from miscellaneous plastic wastes: Physico-chemical characterization and impact on fish and amphibian development. , Bonfanti P., Ecotoxicol Environ Saf. December 1, 2021; 225 112775.
Melanopsin phototransduction: beyond canonical cascades. , Contreras E., J Exp Biol. December 1, 2021; 224 (23):
Bacterial lipopolysaccharides can initiate regeneration of the Xenopus tadpole tail. , Bishop TF., iScience. November 19, 2021; 24 (11): 103281.
Structural features of nucleosomes in interphase and metaphase chromosomes. , Arimura Y., Mol Cell. November 4, 2021; 81 (21): 4377-4397.e12.
Snapin Specifically Up-Regulates Cav1.3 Ca2+ Channel Variant with a Long Carboxyl Terminus. , Jeong S., Int J Mol Sci. October 19, 2021; 22 (20):
Translocation of TMEM175 Lysosomal Potassium Channel to the Plasma Membrane by Dynasore Compounds. , Pergel E., Int J Mol Sci. September 29, 2021; 22 (19):
Transcriptome and Methylome Analysis Reveal Complex Cross-Talks between Thyroid Hormone and Glucocorticoid Signaling at Xenopus Metamorphosis. , Buisine N ., Cells. September 9, 2021; 10 (9):
Tril dampens Nodal signaling through Pellino2- and Traf6-mediated activation of Nedd4l. , Kim HS ., Proc Natl Acad Sci U S A. September 7, 2021; 118 (36):
Foxm1 regulates neural progenitor fate during spinal cord regeneration. , Pelzer D., EMBO Rep. September 6, 2021; 22 (9): e50932.
Binding of regulatory proteins to nucleosomes is modulated by dynamic histone tails. , Peng Y., Nat Commun. September 6, 2021; 12 (1): 5280.
Tissue disaggregation and isolation of specific cell types from transgenic Xenopus appendages for transcriptional analysis by FACS. , Kakebeen AD., Dev Dyn. September 1, 2021; 250 (9): 1381-1392.
A systemic cell cycle block impacts stage-specific histone modification profiles during Xenopus embryogenesis. , Pokrovsky D., PLoS Biol. September 1, 2021; 19 (9): e3001377.
A polycystin-2 protein with modified channel properties leads to an increased diameter of renal tubules and to renal cysts. , Grosch M., J Cell Sci. August 15, 2021; 134 (16):
TGF-β1 signaling is essential for tissue regeneration in the Xenopus tadpole tail. , Nakamura M., Biochem Biophys Res Commun. August 6, 2021; 565 91-96.
Rab7 is required for mesoderm patterning and gastrulation in Xenopus. , Kreis J., Biol Open. July 15, 2021; 10 (7):
The molecular basis of coupling between poly(A)- tail length and translational efficiency. , Xiang K., Elife. July 2, 2021; 10
The long and short of it. , Passmore LA., Elife. July 2, 2021; 10
Bisphenol A exposure induces apoptosis and impairs early embryonic development in Xenopus laevis. , Ge Y., Environ Pollut. July 1, 2021; 280 116901.
Functional characterization of knockdown resistance mutations in the plant bug, Apolygus lucorum Meyer-Dür. , Li F., Pestic Biochem Physiol. July 1, 2021; 176 104874.
Fosl1 is vital to heart regeneration upon apex resection in adult Xenopus tropicalis. , Wu HY., NPJ Regen Med. June 29, 2021; 6 (1): 36.
Permitted and restricted steps of human kinetochore assembly in mitotic cell extracts. , Tarasovetc EV., Mol Biol Cell. June 15, 2021; 32 (13): 1241-1255.
Identification of PUFA interaction sites on the cardiac potassium channel KCNQ1. , Yazdi S., J Gen Physiol. June 7, 2021; 153 (6):
KCNK18 Biallelic Variants Associated with Intellectual Disability and Neurodevelopmental Disorders Alter TRESK Channel Activity. , Pavinato L., Int J Mol Sci. June 4, 2021; 22 (11):
Secreted inhibitors drive the loss of regeneration competence in Xenopus limbs. , Aztekin C ., Development. June 1, 2021; 148 (11):
Voltage-clamp fluorometry analysis of structural rearrangements of ATP-gated channel P2X2 upon hyperpolarization. , Andriani RT., Elife. May 19, 2021; 10
The cytokine FAM3B/PANDER is an FGFR ligand that promotes posterior development in Xenopus. , Zhang F., Proc Natl Acad Sci U S A. May 18, 2021; 118 (20):
Non-canonical Hedgehog signaling regulates spinal cord and muscle regeneration in Xenopus laevis larvae. , Hamilton AM ., Elife. May 6, 2021; 10
Mapping single-cell atlases throughout Metazoa unravels cell type evolution. , Tarashansky AJ., Elife. May 4, 2021; 10
Effects of Copper on the Neuromasts of Xenopus Laevis. , Krupa PM., Arch Environ Contam Toxicol. May 1, 2021; 80 (4): 769-778.
Nutrient availability contributes to a graded refractory period for regeneration in Xenopus tropicalis. , Williams MC., Dev Biol. May 1, 2021; 473 59-70.
Bioelectric signaling: Reprogrammable circuits underlying embryogenesis, regeneration, and cancer. , Levin M ., Cell. April 15, 2021;
Functional assessment of the "two-hit" model for neurodevelopmental defects in Drosophila and X. laevis. , Pizzo L., PLoS Genet. April 5, 2021; 17 (4): e1009112.
4-Octylphenol induces developmental abnormalities and interferes the differentiation of neural crest cells in Xenopus laevis embryos. , Xu Y ., Environ Pollut. April 1, 2021; 274 116560.
UXT chaperone prevents proteotoxicity by acting as an autophagy adaptor for p62-dependent aggrephagy. , Yoon MJ., Nat Commun. March 29, 2021; 12 (1): 1955.
Identification of additional outer segment targeting signals in zebrafish rod opsin. , Fang X., J Cell Sci. March 26, 2021; 134 (6):
Furry is required for cell movements during gastrulation and functionally interacts with NDR1. , Cervino AS., Sci Rep. March 23, 2021; 11 (1): 6607.
Low-temperature incubation improves both knock-in and knock-down efficiencies by the CRISPR/Cas9 system in Xenopus laevis as revealed by quantitative analysis. , Kato S., Biochem Biophys Res Commun. March 5, 2021; 543 50-55.
Bistable, Biphasic Regulation of PP2A- B55 Accounts for the Dynamics of Mitotic Substrate Phosphorylation. , Kamenz J., Curr Biol. February 22, 2021; 31 (4): 794-808.e6.
Using an aquatic model, Xenopus laevis, to uncover the role of chromodomain 1 in craniofacial disorders. , Wyatt BH., Genesis. February 1, 2021; 59 (1-2): e23394.
Nucleosome Core Particles Lacking H2B or H3 Tails Are Altered Structurally and Have Differential Base Excision Repair Fingerprints. , Caffrey PJ., Biochemistry. January 26, 2021; 60 (3): 210-218.
Molecular Mechanism of Autosomal Recessive Long QT-Syndrome 1 without Deafness. , Oertli A., Int J Mol Sci. January 23, 2021; 22 (3):
JARID2 and AEBP2 regulate PRC2 in the presence of H2AK119ub1 and other histone modifications. , Kasinath V., Science. January 22, 2021; 371 (6527):
Precisely controlled visual stimulation to study experience-dependent neural plasticity in Xenopus tadpoles. , Hiramoto M., STAR Protoc. January 8, 2021; 2 (1): 100252.
Ectoderm to mesoderm transition by down-regulation of actomyosin contractility. , Kashkooli L., PLoS Biol. January 6, 2021; 19 (1): e3001060.
External Cd2+ and protons activate the hyperpolarization-gated K+ channel KAT1 at the voltage sensor. , Zhou Y., J Gen Physiol. January 4, 2021; 153 (1):
Epigenetic control of myeloid cells behavior by Histone Deacetylase activity (HDAC) during tissue and organ regeneration in Xenopus laevis. , Pentagna N., Dev Comp Immunol. January 1, 2021; 114 103840.
Heterologous functional expression of ascidian Nav1 channels and close relationship with the evolutionary ancestor of vertebrate Nav channels. , Kawai T., J Biol Chem. January 1, 2021; 296 100783.
The Secreted Protein Disulfide Isomerase Ag1 Lost by Ancestors of Poorly Regenerating Vertebrates Is Required for Xenopus laevis Tail Regeneration. , Ivanova AS., Front Cell Dev Biol. January 1, 2021; 9 738940.