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Mechanical roles of apical constriction, cell elongation, and cell migration during neural tube formation in Xenopus. , Inoue Y., Biomech Model Mechanobiol. December 1, 2016; 15 (6): 1733-1746.
Early development and function of the Xenopus tadpole retinotectal circuit. , Liu Z., Curr Opin Neurobiol. December 1, 2016; 41 17-23.
Xenopus laevis and Emerging Amphibian Pathogens in Chile. , Soto-Azat C., Ecohealth. December 1, 2016; 13 (4): 775-783.
Mechanosensing is critical for axon growth in the developing brain. , Koser DE., Nat Neurosci. December 1, 2016; 19 (12): 1592-1598.
p,p'-Dichlordiphenyldichloroethylene (p,p'-DDE) can elicit antiandrogenic and estrogenic modes of action in the amphibian Xenopus laevis. , Hoffmann F., Physiol Behav. December 1, 2016; 167 172-178.
Uptake, accumulation and elimination of polystyrene microspheres in tadpoles of Xenopus tropicalis. , Hu L., Chemosphere. December 1, 2016; 164 611-617.
Functionomics of NCC mutations in Gitelman syndrome using a novel mammalian cell-based activity assay. , Valdez-Flores MA., Am J Physiol Renal Physiol. December 1, 2016; 311 (6): F1159-F1167.
Specific connectivity between photoreceptors and horizontal cells in the zebrafish retina. , Klaassen LJ., J Neurophysiol. December 1, 2016; 116 (6): 2799-2814.
Molecular determinants of transport function in zebrafish Slc34a Na-phosphate transporters. , Werner A., Am J Physiol Regul Integr Comp Physiol. December 1, 2016; 311 (6): R1213-R1222.
Pathogenic variants in KCTD7 perturb neuronal K+ fluxes and glutamine transport. , Moen MN., Brain. December 1, 2016; 139 (Pt 12): 3109-3120.
Direct reprogramming of fibroblasts into renal tubular epithelial cells by defined transcription factors. , Kaminski MM., 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., Environ Toxicol Pharmacol. December 1, 2016; 48 237-244.
Malaria parasite CelTOS targets the inner leaflet of cell membranes for pore-dependent disruption. , Jimah JR., Elife. December 1, 2016; 5
Block of nicotinic acetylcholine receptors by philanthotoxins is strongly dependent on their subunit composition. , Kachel HS., Sci Rep. November 30, 2016; 6 38116.
Physical basis of large microtubule aster growth. , Ishihara K., Elife. November 28, 2016; 5
Emergence of Selectivity to Looming Stimuli in a Spiking Network Model of the Optic Tectum. , Jang EV., Front Neural Circuits. November 24, 2016; 10 95.
An NMDA receptor-dependent mechanism for subcellular segregation of sensory inputs in the tadpole optic tectum. , Hamodi AS., Elife. November 23, 2016; 5
Mechanism and Regulation of DNA-Protein Crosslink Repair by the DNA-Dependent Metalloprotease SPRTN. , Stingele J., Mol Cell. November 17, 2016; 64 (4): 688-703.
Coevolution of paired receptors in Xenopus carcinoembryonic antigen-related cell adhesion molecule families suggests appropriation as pathogen receptors. , Zimmermann W., BMC Genomics. November 16, 2016; 17 (1): 928.
Horizontal cells expressing melanopsin x are novel photoreceptors in the avian inner retina. , Morera LP., Proc Natl Acad Sci U S A. November 15, 2016; 113 (46): 13215-13220.
MarvelD3 regulates the c- Jun N-terminal kinase pathway during eye development in Xenopus. , Vacca B., Biol Open. November 15, 2016; 5 (11): 1631-1641.
The biosynthetic gene cluster for the cyanogenic glucoside dhurrin in Sorghum bicolor contains its co-expressed vacuolar MATE transporter. , Darbani B., Sci Rep. November 14, 2016; 6 37079.
Heterogeneous architecture of vertebrate kinetochores revealed by three-dimensional superresolution fluorescence microscopy. , Wynne DJ., Mol Biol Cell. November 7, 2016; 27 (22): 3395-3404.
Variability of Rheotaxis Behaviors in Larval Bullfrogs Highlights Species Diversity in Lateral Line Function. , Brown EE ., PLoS One. November 7, 2016; 11 (11): e0166989.
Key Structural Determinants in the Agonist Binding Loops of Human β2 and β4 Nicotinic Acetylcholine Receptor Subunits Contribute to α3β4 Subtype Selectivity of α-Conotoxins. , Cuny H., J Biol Chem. November 4, 2016; 291 (45): 23779-23792.
Unorthodox Acetylcholine Binding Sites Formed by α5 and β3 Accessory Subunits in α4β2* Nicotinic Acetylcholine Receptors. , Jain A., J Biol Chem. November 4, 2016; 291 (45): 23452-23463.
Xenopus laevis Nkx5.3 and sensory organ homeobox (SOHo) are expressed in developing sensory organs and ganglia of the head and anterior trunk. , Kelly LE., Dev Genes Evol. November 1, 2016; 226 (6): 423-428.
Teratogenic effects of five anticancer drugs on Xenopus laevis embryos. , Isidori M., Ecotoxicol Environ Saf. November 1, 2016; 133 90-6.
Two light-activated neuroendocrine circuits arising in the eye trigger physiological and morphological pigmentation. , Bertolesi GE ., Pigment Cell Melanoma Res. November 1, 2016; 29 (6): 688-701.
Cholesterol-rich membrane microdomains modulate Wnt/ β-catenin morphogen gradient during Xenopus development. , Reis AH., Mech Dev. November 1, 2016; 142 30-39.
Members of the Rusc protein family interact with Sufu and inhibit vertebrate Hedgehog signaling. , Jin Z., Development. November 1, 2016; 143 (21): 3944-3955.
Ascl1 represses the mesendoderm induction in Xenopus. , Min Z., Acta Biochim Biophys Sin (Shanghai). November 1, 2016; 48 (11): 1006-1015.
Two Members of the Aluminum-Activated Malate Transporter Family, SlALMT4 and SlALMT5, are Expressed during Fruit Development, and the Overexpression of SlALMT5 Alters Organic Acid Contents in Seeds in Tomato (Solanum lycopersicum). , Sasaki T., Plant Cell Physiol. November 1, 2016; 57 (11): 2367-2379.
Spindle function in Xenopus oocytes involves possible nanodomain calcium signaling. , Li R., Mol Biol Cell. November 1, 2016; 27 (21): 3273-3283.
KCNA4 deficiency leads to a syndrome of abnormal striatum, congenital cataract and intellectual disability. , Kaya N., J Med Genet. November 1, 2016; 53 (11): 786-792.
The lens regenerative competency of limbal vs. central regions of mature Xenopus cornea epithelium. , Hamilton PW., Exp Eye Res. November 1, 2016; 152 94-99.
Autoregulation of retinal homeobox ( rax) gene promoter activity through a highly conserved genomic element. , Kelly LE., Genesis. November 1, 2016; 54 (11): 562-567.
Structural, Functional and Phylogenetic Analysis of Sperm Lysozyme-Like Proteins. , Kalra S., PLoS One. November 1, 2016; 11 (11): e0166321.
Functional assessment of SLC4A11, an integral membrane protein mutated in corneal dystrophies. , Loganathan SK., Am J Physiol Cell Physiol. November 1, 2016; 311 (5): C735-C748.
Exosomal GAPDH from Proximal Tubule Cells Regulate ENaC Activity. , Jella KK., PLoS One. November 1, 2016; 11 (11): e0165763.
CPEB4 is regulated during cell cycle by ERK2/Cdk1-mediated phosphorylation and its assembly into liquid-like droplets. , Guillén-Boixet J., Elife. November 1, 2016; 5
PTH1R Mutants Found in Patients with Primary Failure of Tooth Eruption Disrupt G-Protein Signaling. , Subramanian H., PLoS One. November 1, 2016; 11 (11): e0167033.
Sodium Channel Mutations and Pyrethroid Resistance in Aedes aegypti. , Du Y., Insects. October 31, 2016; 7 (4):
The cellular and molecular mechanisms of tissue repair and regeneration as revealed by studies in Xenopus. , Li J., Regeneration (Oxf). October 28, 2016; 3 (4): 198-208.
Expression of ribosomopathy genes during Xenopus tropicalis embryogenesis. , Robson A., BMC Dev Biol. October 26, 2016; 16 (1): 38.
Multiplicity of Buc copies in Atlantic salmon contrasts with loss of the germ cell determinant in primates, rodents and axolotl. , Škugor A., BMC Evol Biol. October 26, 2016; 16 (1): 232.
Genome evolution in the allotetraploid frog Xenopus laevis. , Session AM ., Nature. October 20, 2016; 538 (7625): 336-343.
Formaldehyde impairs transepithelial sodium transport. , Cui Y., Sci Rep. October 20, 2016; 6 35857.
Mechanisms underlying the endogenous dopaminergic inhibition of spinal locomotor circuit function in Xenopus tadpoles. , Picton LD., Sci Rep. October 20, 2016; 6 35749.
Extracellular Linkers Completely Transplant the Voltage Dependence from Kv1.2 Ion Channels to Kv2.1. , Elinder F., Biophys J. October 18, 2016; 111 (8): 1679-1691.