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Summary Anatomy Item Literature (9673) Expression Attributions Wiki
XB-ANAT-110

Papers associated with germ cell

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Pa2G4 is a novel Six1 co-factor that is required for neural crest and otic development., Neilson KM., Dev Biol. January 15, 2017; 421 (2): 171-182.                    


High-throughput analysis reveals novel maternal germline RNAs crucial for primordial germ cell preservation and proper migration., Owens DA., Development. January 15, 2017; 144 (2): 292-304.                                                                                        


APE2 Zf-GRF facilitates 3'-5' resection of DNA damage following oxidative stress., Wallace BD., Proc Natl Acad Sci U S A. January 10, 2017; 114 (2): 304-309.


A sequential multi-target Mps1 phosphorylation cascade promotes spindle checkpoint signaling., Ji Z., Elife. January 10, 2017; 6               


Calmodulin Gates Aquaporin 0 Permeability through a Positively Charged Cytoplasmic Loop., Fields JB., J Biol Chem. January 6, 2017; 292 (1): 185-195.


KChIP2 genotype dependence of transient outward current (Ito) properties in cardiomyocytes isolated from male and female mice., Waldschmidt L., PLoS One. January 3, 2017; 12 (1): e0171213.                


Low Expression in Xenopus Oocytes and Unusual Functional Properties of α1β2γ2 GABAA Receptors with Non-Conventional Subunit Arrangement., Baur R., PLoS One. January 3, 2017; 12 (1): e0170572.        


Analysis of Cell Size in the Gastrula of Ten Frog Species Reveals a Correlation of Egg with Cell Sizes, and a Conserved Pattern of Small Cells in the Marginal Zone., Vargas A., J Exp Zool B Mol Dev Evol. January 1, 2017; 328 (1-2): 88-96.


Primordial Germ Cell Isolation from Xenopus laevis Embryos., Butler AM., Methods Mol Biol. January 1, 2017; 1463 115-124.


A Sister Chromatid Cohesion Assay Using Xenopus Egg Extracts., Shintomi K., Methods Mol Biol. January 1, 2017; 1515 3-21.


Expression profile of rrbp1 genes during embryonic development and in adult tissues of Xenopus laevis., Liu GH., Gene Expr Patterns. January 1, 2017; 23-24 1-6.                      


Mechanisms of Vertebrate Germ Cell Determination., Aguero T., Adv Exp Med Biol. January 1, 2017; 953 383-440.


Controlling the Messenger: Regulated Translation of Maternal mRNAs in Xenopus laevis Development., Sheets MD., Adv Exp Med Biol. January 1, 2017; 953 49-82.


Xenopus extract approaches to studying microtubule organization and signaling in cytokinesis., Field CM., Methods Cell Biol. January 1, 2017; 137 395-435.


Probing the biology of cell boundary conditions through confinement of Xenopus cell-free cytoplasmic extracts., Bermudez JG., Genesis. January 1, 2017; 55 (1-2):     


Exosomal trafficking in Xenopus development., Danilchik M., Genesis. January 1, 2017; 55 (1-2):           


Maternal messages to live by: a personal historical perspective., King ML., Genesis. January 1, 2017; 55 (1-2):   


Xenopus egg extract to study regulation of genome-wide and locus-specific DNA replication., Raspelli E., Genesis. January 1, 2017; 55 (1-2):       


Translational Control of Germ Cell Decisions., Pushpa K., Results Probl Cell Differ. January 1, 2017; 59 175-200.


β Subunits Functionally Differentiate Human Kv4.3 Potassium Channel Splice Variants., Abbott GW., Front Physiol. January 1, 2017; 8 66.                  


Asymmetric Divisions in Oogenesis., Bilinski SM., Results Probl Cell Differ. January 1, 2017; 61 211-228.


Role of MicroRNAs in Zygotic Genome Activation: Modulation of mRNA During Embryogenesis., Rosa A., Methods Mol Biol. January 1, 2017; 1605 31-43.


Inhibition of insect olfactory behavior by an airborne antagonist of the insect odorant receptor co-receptor subunit., Kepchia D., PLoS One. January 1, 2017; 12 (5): e0177454.        


Ensemble and Single-Molecule Analysis of Non-Homologous End Joining in Frog Egg Extracts., Graham TGW., Methods Enzymol. January 1, 2017; 591 233-270.


Xenopus laevis as Model System to Study DNA Damage Response and Replication Fork Stability., Sannino V., Methods Enzymol. January 1, 2017; 591 211-232.


Localization in Oogenesis of Maternal Regulators of Embryonic Development., Escobar-Aguirre M., Adv Exp Med Biol. January 1, 2017; 953 173-207.


Ion Channels as Reporters of Membrane Receptor Function: Automated Analysis in Xenopus Oocytes., Vivaudou M., Methods Mol Biol. January 1, 2017; 1635 283-301.


RNA Localization in the Vertebrate Oocyte: Establishment of Oocyte Polarity and Localized mRNA Assemblages., Oh D., Results Probl Cell Differ. January 1, 2017; 63 189-208.


FXYD8, a Novel Regulator of Renal Na+/K+-ATPase in the Euryhaline Teleost, Tetraodon nigroviridis., Wang PJ., Front Physiol. January 1, 2017; 8 576.            


β Subunits Control the Effects of Human Kv4.3 Potassium Channel Phosphorylation., Abbott GW., Front Physiol. January 1, 2017; 8 646.            


A mannitol/sorbitol receptor stimulates dietary intake in Tribolium castaneum., Takada T., PLoS One. January 1, 2017; 12 (10): e0186420.              


The Power of Xenopus Egg Extract for Reconstitution of Centromere and Kinetochore Function., French BT., Prog Mol Subcell Biol. January 1, 2017; 56 59-84.


Spindle-to-Cortex Communication in Cleaving Frog Eggs., Mitchison TJ., Cold Spring Harb Symp Quant Biol. January 1, 2017; 82 165-171.          


The WD40 Domain of HIRA Is Essential for RI-nucleosome Assembly in Xenopus Egg Extracts., Zhu R., Cell Struct Funct. January 1, 2017; 42 (1): 37-48.


Xenopus Oocytes: Optimized Methods for Microinjection, Removal of Follicular Cell Layers, and Fast Solution Changes in Electrophysiological Experiments., Maldifassi MC., J Vis Exp. December 31, 2016; (118):


Generic Theoretical Models to Predict Division Patterns of Cleaving Embryos., Pierre A., Dev Cell. December 19, 2016; 39 (6): 667-682.


Cohesin acetylation and Wapl-Pds5 oppositely regulate translocation of cohesin along DNA., Kanke M., EMBO J. December 15, 2016; 35 (24): 2686-2698.


CFAP157 is a murine downstream effector of FOXJ1 that is specifically required for flagellum morphogenesis and sperm motility., Weidemann M., Development. December 15, 2016; 143 (24): 4736-4748.    


Cellular encoding of Cy dyes for single-molecule imaging., Leisle L., Elife. December 12, 2016; 5                     


Regulation of human cardiac potassium channels by full-length KCNE3 and KCNE4., Abbott GW., Sci Rep. December 6, 2016; 6 38412.              


Regulation of TRPP3 Channel Function by N-terminal Domain Palmitoylation and Phosphorylation., Zheng W., J Biol Chem. December 2, 2016; 291 (49): 25678-25691.


Over 4100 protein identifications from a Xenopus laevis fertilized egg digest using reversed-phase chromatographic prefractionation followed by capillary zone electrophoresis-electrospray ionization-tandem mass spectrometry analysis., Yan X., Proteomics. December 1, 2016; 16 (23): 2945-2952.


Ca2+ permeability and Na+ conductance in cellular toxicity caused by hyperactive DEG/ENaC channels., Matthewman C., Am J Physiol Cell Physiol. December 1, 2016; 311 (6): C920-C930.


Expression of a human NPT1/SLC17A1 missense variant which increases urate export., Sakiyama M., Nucleosides Nucleotides Nucleic Acids. December 1, 2016; 35 (10-12): 536-542.


Malaria parasite CelTOS targets the inner leaflet of cell membranes for pore-dependent disruption., Jimah JR., Elife. December 1, 2016; 5                   


Physical basis of large microtubule aster growth., Ishihara K., Elife. November 28, 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.                


Heterogeneous architecture of vertebrate kinetochores revealed by three-dimensional superresolution fluorescence microscopy., Wynne DJ., Mol Biol Cell. November 7, 2016; 27 (22): 3395-3404.          


Boric Acid Is Reproductively Toxic to Adult Xenopus laevis, but Not Endocrine Active., Fort DJ., Toxicol Sci. November 1, 2016; 154 (1): 16-26.


Analyses of EMI functions on meiotic maturation of porcine oocytes., Fujioka YA., Mol Reprod Dev. November 1, 2016; 83 (11): 983-992.

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