Results 1 - 50 of 6266 results
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.
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.
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):
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.
Xenopus Oocytes as a Powerful Cellular Model to Study Foreign Fully-Processed Membrane Proteins. , Ivorra I., Membranes (Basel). October 11, 2022; 12 (10):
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.
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):
Cell cycle and developmental control of cortical excitability in Xenopus laevis. , Swider ZT., Mol Biol Cell. July 1, 2022; 33 (8): ar73.
Oocytes maintain ROS-free mitochondrial metabolism by suppressing complex I. , Rodríguez-Nuevo A., Nature. July 1, 2022; 607 (7920): 756-761.
Generating Nonmosaic Mutants in Xenopus Using CRISPR-Cas in Oocytes. , Cha SW ., Cold Spring Harb Protoc. June 24, 2022; 2022 (6): Pdb.prot106989.
Odorant inhibition in mosquito olfaction mediated by inverse agonists. , Xu P., Biochem Biophys Res Commun. June 18, 2022; 609 156-162.
Structure of cytoplasmic ring of nuclear pore complex by integrative cryo-EM and AlphaFold. , Fontana P., Science. June 10, 2022; 376 (6598): eabm9326.
The activity of the serotonergic 5-HT1A receptor is modulated by voltage and sodium levels. , Tauber M., J Biol Chem. June 1, 2022; 298 (6): 101978.
Mechanistic basis for multidrug resistance and collateral drug sensitivity conferred to the malaria parasite by polymorphisms in PfMDR1 and PfCRT. , Shafik SH ., PLoS Biol. May 4, 2022; 20 (5): e3001616.
The molecular identity of the characean OH- transporter: a candidate related to the SLC4 family of animal pH regulators. , Quade BN., Protoplasma. May 1, 2022; 259 (3): 615-626.
Effect of ACGT motif in spatiotemporal regulation of AtAVT6D, which improves tolerance to osmotic stress and nitrogen-starvation. , Dhatterwal P., Plant Mol Biol. May 1, 2022; 109 (1-2): 67-82.
An odorant receptor of the green mirid bug, Apolygus lucorum, tuned to linalool. , Zhang S., Insect Biochem Mol Biol. May 1, 2022; 144 103764.
Impaired phosphate transport in SLC34A2 variants in patients with pulmonary alveolar microlithiasis. , Jönsson ÅLM., Hum Genomics. April 20, 2022; 16 (1): 13.
A Novel Efficient L-Lysine Exporter Identified by Functional Metagenomics. , Malla S., Front Microbiol. April 14, 2022; 13 855736.
Microinjection of Xenopus tropicalis Embryos. , Lane M., Cold Spring Harb Protoc. April 1, 2022; 2022 (4): Pdb.prot107644.
The rice phosphate transporter OsPHT1;7 plays a dual role in phosphorus redistribution and anther development. , Dai C., Plant Physiol. March 28, 2022; 188 (4): 2272-2288.
Protocol to identify ligands of odorant receptors using two-electrode voltage clamp combined with the Xenopus oocytes heterologous expression system. , Cao S., STAR Protoc. March 15, 2022; 3 (2): 101249.
Mosquito Olfactory Response Ensemble enables pattern discovery by curating a behavioral and electrophysiological response database. , Gupta A., iScience. February 5, 2022; 25 (3): 103938.
Xenopus laevis il11ra.L is an experimentally proven interleukin-11 receptor component that is required for tadpole tail regeneration. , Suzuki S., Sci Rep. February 3, 2022; 12 (1): 1903.
Elucidating the role of SWEET13 in phloem loading of the C4 grass Setaria viridis. , Chen L., Plant J. February 1, 2022; 109 (3): 615-632.
Functional characterization of a novel, highly expressed ion-driven sugar antiporter in the thoracic muscles of Helicoverpa armigera. , Yuan YY ., Insect Sci. February 1, 2022; 29 (1): 78-90.
DNA-induced spatial entrapment of general transcription machinery can stabilize gene expression in a nondividing cell. , Javed K., Proc Natl Acad Sci U S A. January 25, 2022; 119 (4):
Recording Gap Junction Current from Xenopus Oocytes. , Shui Y., J Vis Exp. January 21, 2022; (179):
SCF Ligases and Their Functions in Oogenesis and Embryogenesis-Summary of the Most Important Findings throughout the Animal Kingdom. , Kinterová V., Cells. January 11, 2022; 11 (2):
Exposure to a mixture of benzo[a]pyrene and triclosan induces multi-and transgenerational metabolic disorders associated with decreased female investment in reproduction in Silurana (Xenopus) tropicalis. , Usal M., Environ Pollut. January 1, 2022; 292 (Pt B): 118418.
Sperm associated antigen 7 is activated by T3 during Xenopus tropicalis metamorphosis via a thyroid hormone response element within the first intron. , Fu L., Dev Growth Differ. January 1, 2022; 64 (1): 48-58.
Functional characterization of Clonorchis sinensis sodium-bile acid co-transporter (CsSBAT) as a steroid sulfate transporter. , Jung H ., Parasitol Res. January 1, 2022; 121 (1): 217-224.
Mutations of the nACh Receptor M4 Helix Reveal Different Phenotypes in Different Expression Systems: Could Lipids be Responsible? , Mesoy SM., Front Physiol. January 1, 2022; 13 850782.
A Simplified Protocol to Incorporate the Fluorescent Unnatural Amino Acid ANAP into Xenopus laevis Oocyte-Expressed P2X7 Receptors. , Durner A., Methods Mol Biol. January 1, 2022; 2510 193-216.
Established Protocols for cRNA Expression and Voltage-Clamp Characterization of the P2X7 Receptor in Xenopus laevis Oocytes. , Schmalzing G., Methods Mol Biol. January 1, 2022; 2510 157-192.
Molecular mechanisms underlying enhanced hemichannel function of a cataract-associated Cx50 mutant. , Tong JJ., Biophys J. December 21, 2021; 120 (24): 5644-5656.
L-bodies are RNA-protein condensates driving RNA localization in Xenopus oocytes. , Neil CR., Mol Biol Cell. December 1, 2021; 32 (22): ar37.
Clustering of Aromatic Residues in Prion-like Domains Can Tune the Formation, State, and Organization of Biomolecular Condensates. , Holehouse AS., Biochemistry. November 30, 2021; 60 (47): 3566-3581.
Tracking the movement of discrete gating charges in a voltage-gated potassium channel. , Priest MF., Elife. November 15, 2021; 10
Expression of truncated Kir6.2 promotes insertion of functionally inverted ATP-sensitive K+ channels. , Heitz BA., Sci Rep. November 2, 2021; 11 (1): 21539.
3-phosphoinositide-dependent protein kinase 1 (PDK1) mediates crosstalk between Src and Akt pathways in MET receptor signaling. , Molinaro C., FEBS Lett. November 1, 2021; 595 (21): 2655-2664.