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Summary Anatomy Item Literature (6354) Expression Attributions Wiki
XB-ANAT-254

Papers associated with oocyte

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Molecular Mechanism of Action of Cycloxaprid, An Oxabridged cis-Nitromethylene Neonicotinoid., Zhang Y., Int J Mol Sci. April 19, 2023; 24 (8):       


mRNA 3' -UTR-mediate translational control through PAS and CPE in sheep oocyte., Song CR., Theriogenology. April 15, 2023; 201 30-40.


Verapamil inhibits Kir2.3 channels by binding to the pore and interfering with PIP2 binding., Xynogalos P., Naunyn Schmiedebergs Arch Pharmacol. April 1, 2023; 396 (4): 659-667.


Hiat1 as a new transporter involved in ammonia regulation., Fehsenfeld S., Sci Rep. March 17, 2023; 13 (1): 4416.    


Extracellular intersubunit interactions modulate epithelial Na+ channel gating., Zhang L., J Biol Chem. March 1, 2023; 299 (3): 102914.                


Molecular Mechanism of L-Pyroglutamic Acid Interaction with the Human Sour Receptor., Eom S., J Microbiol Biotechnol. February 28, 2023; 33 (2): 203-210.            


Xenopus laevis Oocyte Array Fluidic Device Integrated with Microelectrodes for A Compact Two-Electrode Voltage Clamping System., Misawa N., Sensors (Basel). February 21, 2023; 23 (5):             


Ion channel thermodynamics studied with temperature jumps measured at the cell membrane., Bassetto CAZ., Biophys J. February 21, 2023; 122 (4): 661-671.          


Do Amino Acid Antiporters Have Asymmetric Substrate Specificity?, Gauthier-Coles G., Biomolecules. February 6, 2023; 13 (2):                 


Cellular Distribution Pattern of tjp1 (ZO-1) in Xenopus laevis Oocytes Heterologously Expressing Claudins., Brunner N., J Membr Biol. February 1, 2023; 256 (1): 51-61.


Asbestos Fibers Enhance the TMEM16A Channel Activity in Xenopus Oocytes., Bernareggi A., Membranes (Basel). February 1, 2023; 13 (2):                     


Divergence between Hemichannel and Gap Junction Permeabilities of Connexin 30 and 26., Xu J., Life (Basel). January 31, 2023; 13 (2):                 


Increased Hemichannel Activity Displayed by a Connexin43 Mutation Causing a Familial Connexinopathy Exhibiting Hypotrichosis with Follicular Keratosis and Hyperostosis., Crouthamel OE., Int J Mol Sci. January 22, 2023; 24 (3):           


Role of K364 next to the active site cysteine in voltage-dependent phosphatase activity of Ci-VSP., Paixao IC., Biophys J. January 20, 2023;


Methylene Blue Inhibits Cromakalim-Activated K+ Currents in Follicle-Enclosed Oocytes., Isaev D., Membranes (Basel). January 18, 2023; 13 (2):         


Improved ANAP incorporation and VCF analysis reveal details of P2X7 current facilitation and a limited conformational interplay between ATP binding and the intracellular ballast domain., Durner A., Elife. January 4, 2023; 12


Artificial Fluorescent Glucosinolates (F-GSLs) Are Transported by the Glucosinolate Transporters GTR1/2/3., Kanstrup C., Int J Mol Sci. January 4, 2023; 24 (2):       


Proton gradient mediates hemolymph trehalose influx into aphid bacteriocytes., Iwata M., Arch Insect Biochem Physiol. January 1, 2023; 112 (1): e21971.


Seawater fish use an electrogenic boric acid transporter, Slc4a11A, for boric acid excretion by the kidney., Kato A., J Biol Chem. January 1, 2023; 299 (1): 102740.                    


pXOOY: A dual-function vector for expression of membrane proteins in Saccharomyces cerevisiae and Xenopus laevis oocytes., Vold VA., PLoS One. January 1, 2023; 18 (2): e0281868.                


Dopamine-induced arrestin recruitment and desensitization of the dopamine D4 receptor is regulated by G protein-coupled receptor kinase-2., Burström V., Front Pharmacol. January 1, 2023; 14 1087171.          


Biochemical evidence that the whole compartment activity behavior of GAPDH differs between the cytoplasm and nucleus., Tang HS., PLoS One. January 1, 2023; 18 (8): e0290892.                                    


Acute Inhibition of the Human Kv1.5 Channel by H1 Receptor Antagonist Dimenhydrinate: Mode of Action., Park SI., Biol Pharm Bull. January 1, 2023; 46 (10): 1394-1402.


Functional expression and ligand identification of homo- and heteromeric Drosophila melanogaster CO2 receptors in the Xenopus laevis oocyte system., Ziemba PM., PLoS One. January 1, 2023; 18 (12): e0295404.


Regulation of RNA localization during oocyte maturation by dynamic RNA-ER association and remodeling of the ER., Hwang H., Cell Rep. December 13, 2022; 41 (11): 111802.                              


Human SLFN5 and its Xenopus Laevis ortholog regulate entry into mitosis and oocyte meiotic resumption., Vit G., Cell Death Discov. December 8, 2022; 8 (1): 484.                


Comparative analysis of vertebrates reveals that mouse primordial oocytes do not contain a Balbiani body., Dhandapani L., J Cell Sci. December 1, 2022; 135 (1):                     


Active Pharmaceutical Ingredient Uptake by Zebrafish (Danio rerio) Oct2 (slc22a2) Transporter Expressed in Xenopus laevis Oocytes., Chang ED., Environ Toxicol Chem. December 1, 2022; 41 (12): 2993-2998.


Inositol 1, 4, 5-trisphosphate receptor is required for spindle assembly in Xenopus oocytes., Li R., Mol Biol Cell. December 1, 2022; 33 (14): br27.          


Mining Lygus hesperus (western tarnished plant bug) transcriptomic data for transient receptor potential channels: Expression profiling and functional characterization of a Painless homolog., Hull JJ., Comp Biochem Physiol Part D Genomics Proteomics. December 1, 2022; 44 101027.


A localized calcium transient and polar body abscission., Mo G., Cell Cycle. November 1, 2022; 21 (21): 2239-2254.


Unravelling oocyte ultrastructure., Böke E., Nat Rev Mol Cell Biol. November 1, 2022; 23 (11): 698.


The translation regulator Zar1l controls timing of meiosis in Xenopus oocytes., Heim A., Development. November 1, 2022; 149 (21):                           


Multienzyme activity profiling for evaluation of cell-to-cell variability of metabolic state., Gill GS., FASEB Bioadv. November 1, 2022; 4 (11): 709-723.


Production of Transgenic F0 Animals and Permanent Lines by Sperm Nuclear Transplantation in Xenopus tropicalis., Nakayama T., Cold Spring Harb Protoc. October 25, 2022;


Xenopus Oocytes as a Powerful Cellular Model to Study Foreign Fully-Processed Membrane Proteins., Ivorra I., Membranes (Basel). October 11, 2022; 12 (10):             


Flux coupling, not specificity, shapes the transport and phylogeny of SLC6 glycine transporters., Le Guellec B., Proc Natl Acad Sci U S A. October 11, 2022; 119 (41): e2205874119.                                              


Differential nuclear import sets the timing of protein access to the embryonic genome., Nguyen T., Nat Commun. October 6, 2022; 13 (1): 5887.                                  


8 Å structure of the outer rings of the Xenopus laevis nuclear pore complex obtained by cryo-EM and AI., Tai L., Protein Cell. October 1, 2022; 13 (10): 760-777.                                                                        


Revisiting the multisite phosphorylation that produces the M-phase supershift of key mitotic regulators., Tan T., Mol Biol Cell. October 1, 2022; 33 (12): ar115.                                                      


Functional analysis of a bitter gustatory receptor highly expressed in the larval maxillary galea of Helicoverpa armigera., Chen Y., PLoS Genet. October 1, 2022; 18 (10): e1010455.    


Evolutionary conservation of maternal RNA localization in fishes and amphibians revealed by TOMO-Seq., Naraine R., Dev Biol. September 1, 2022; 489 146-160.                


Nodulisporic acid produces direct activation and positive allosteric modulation of AVR-14B, a glutamate-gated chloride channel from adult Brugia malayi., Choudhary S., Proc Natl Acad Sci U S A. August 23, 2022; 119 (34): e2111932119.    


Fluorescently Labeled α-Conotoxin TxID, a New Probe for α3β4 Neuronal Nicotinic Acetylcholine Receptors., Huang M., Mar Drugs. August 12, 2022; 20 (8):


Picrotoxin Delineates Different Transport Configurations for Malate and γ Aminobutyric Acid through TaALMT1., Ramesh SA., Biology (Basel). August 2, 2022; 11 (8):


Component analysis of nucleolar protein compartments using Xenopus laevis oocytes., Lavering ED., Dev Growth Differ. August 1, 2022; 64 (6): 306-317.            


A versatile cortical pattern-forming circuit based on Rho, F-actin, Ect2, and RGA-3/4., Michaud A., J Cell Biol. August 1, 2022; 221 (8):         


Phosphate position is key in mediating transmembrane ion channel TMEM16A-phosphatidylinositol 4,5-bisphosphate interaction., Tembo M., J Biol Chem. August 1, 2022; 298 (8): 102264.              


3D Media Stabilizes Membrane and Prolongs Lifespan of Defolliculated Xenopus laevis Oocytes., Aggarwal ND., Membranes (Basel). July 31, 2022; 12 (8):


Functional Analysis of Gastric Tight Junction Proteins in Xenopus laevis Oocytes., Stein L., Membranes (Basel). July 23, 2022; 12 (8):

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