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Summary Anatomy Item Literature (2128) Expression Attributions Wiki
XB-ANAT-3747

Papers associated with cytoplasm

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Temperature-sensitive intermediate filament assembly. Alternative structures of Xenopus laevis vimentin in vitro and in vivo., Herrmann H., J Mol Biol. November 5, 1993; 234 (1): 99-113.


RNA travel: tracks from DNA to cytoplasm., Rosbash M., Cell. November 5, 1993; 75 (3): 399-401.


Structural requirements of 5S rRNA for nuclear transport, 7S ribonucleoprotein particle assembly, and 60S ribosomal subunit assembly in Xenopus oocytes., Allison LA., Mol Cell Biol. November 1, 1993; 13 (11): 6819-31.


The RNA polymerase I-specific transcription initiation factor UBF is associated with transcriptionally active and inactive ribosomal genes., Zatsepina OV., Chromosoma. November 1, 1993; 102 (9): 599-611.


Deep cytoplasmic rearrangements in axis-respecified Xenopus embryos., Denegre JM., Dev Biol. November 1, 1993; 160 (1): 157-64.          


Deep cytoplasmic rearrangements in ventralized Xenopus embryos., Brown EE, Brown EE., Dev Biol. November 1, 1993; 160 (1): 148-56.


Methylphosphate cap structure increases the stability of 7SK, B2 and U6 small RNAs in Xenopus oocytes., Shumyatsky G., Nucleic Acids Res. October 11, 1993; 21 (20): 4756-61.


PUB1 is a major nuclear and cytoplasmic polyadenylated RNA-binding protein in Saccharomyces cerevisiae., Anderson JT., Mol Cell Biol. October 1, 1993; 13 (10): 6102-13.


Nucleoplasmin uptake by facilitated transport and intranuclear binding., Vancurova I., Eur J Cell Biol. October 1, 1993; 62 (1): 22-33.


Calcium dependent variance of chloride current fluctuations in Xenopus laevis oocytes., Poledna J., Gen Physiol Biophys. October 1, 1993; 12 (5): 445-52.


Localized RNAs and their functions., Ding D., Bioessays. October 1, 1993; 15 (10): 651-8.


A pre-export U1 snRNP in Xenopus laevis oocyte nuclei., Terns MP., Nucleic Acids Res. September 25, 1993; 21 (19): 4569-73.


RNA binding properties and evolutionary conservation of the Xenopus multifinger protein Xfin., Andreazzoli M., Nucleic Acids Res. September 11, 1993; 21 (18): 4218-25.


Cortical cytoplasm, which induces dorsal axis formation in Xenopus, is inactivated by UV irradiation of the oocyte., Holowacz T., Development. September 1, 1993; 119 (1): 277-85.          


The nuclear pore complex: three-dimensional surface structure revealed by field emission, in-lens scanning electron microscopy, with underlying structure uncovered by proteolysis., Goldberg MW., J Cell Sci. September 1, 1993; 106 ( Pt 1) 261-74.


Stabilization and expression of high levels of p53 during early development in Xenopus laevis., Tchang F., Dev Biol. September 1, 1993; 159 (1): 163-72.


Nuclear export of proteins: the role of nuclear retention., Schmidt-Zachmann MS., Cell. August 13, 1993; 74 (3): 493-504.


Disposition and orientation of ductin (DCCD-reactive vacuolar H(+)-ATPase subunit) in mammalian membrane complexes., Finbow ME., Exp Cell Res. August 1, 1993; 207 (2): 261-70.


A dominant negative protein kinase C zeta subspecies blocks NF-kappa B activation., Diaz-Meco MT., Mol Cell Biol. August 1, 1993; 13 (8): 4770-5.


Requirements for nuclear translocation and nucleolar accumulation of nucleolin of Xenopus laevis., Messmer B., Eur J Cell Biol. August 1, 1993; 61 (2): 369-82.


Xenopus Ro ribonucleoproteins: members of an evolutionarily conserved class of cytoplasmic ribonucleoproteins., O'Brien CA., Proc Natl Acad Sci U S A. August 1, 1993; 90 (15): 7250-4.


Maturation induced internalization of beta 1-integrin by Xenopus oocytes and formation of the maternal integrin pool., Müller AH., Mech Dev. July 1, 1993; 42 (1-2): 77-88.


The sperm-induced Ca2+ wave following fertilization of the Xenopus egg requires the production of Ins(1, 4, 5)P3., Nuccitelli R., Dev Biol. July 1, 1993; 158 (1): 200-12.


A Zn-finger protein, Xfin, is expressed during cone differentiation in the retina of the frog Xenopus laevis., Rijli FM., Int J Dev Biol. June 1, 1993; 37 (2): 311-7.              


Isolation of large quantities of functional, cytoplasm-free Xenopus laevis oocyte nuclei., Lehman CW., Anal Biochem. June 1, 1993; 211 (2): 311-9.


The Xenopus IP3 receptor: structure, function, and localization in oocytes and eggs., Kume S., Cell. May 7, 1993; 73 (3): 555-70.                  


Occurrence of dorsal axis-inducing activity around the vegetal pole of an uncleaved Xenopus egg and displacement to the equatorial region by cortical rotation., Fujisue M., Development. May 1, 1993; 118 (1): 163-70.      


Nuclear protein transport is functionally conserved between yeast and higher eukaryotes., Wagner P., FEBS Lett. April 26, 1993; 321 (2-3): 261-6.


Mapping of a sequence essential for the nuclear transport of the Xenopus ribosomal transcription factor xUBF using a simple coupled translation-transport and acid extraction approach., Dimitrov SI., DNA Cell Biol. April 1, 1993; 12 (3): 275-81.


Activation of human heat shock genes is accompanied by oligomerization, modification, and rapid translocation of heat shock transcription factor HSF1., Baler R., Mol Cell Biol. April 1, 1993; 13 (4): 2486-96.


Possible mechanisms in the rearrangement of non-yolk cytoplasmic materials during maturation of theXenopus laevis oocyte., Suzuki AS., Rouxs Arch Dev Biol. April 1, 1993; 202 (4): 240-245.


kelch encodes a component of intercellular bridges in Drosophila egg chambers., Xue F., Cell. March 12, 1993; 72 (5): 681-93.


Developmental toxicity of caffeine in the larvae of Xenopus laevis., Sakamoto MK., Teratology. March 1, 1993; 47 (3): 189-201.


Three new members of the RNP protein family in Xenopus., Good PJ., Nucleic Acids Res. February 25, 1993; 21 (4): 999-1006.


A nonrandom interneuronal pattern in the developing frog spinal cord., Heathcote RD., J Comp Neurol. February 15, 1993; 328 (3): 437-48.


XLPOU-60, a Xenopus POU-domain mRNA, is oocyte-specific from very early stages of oogenesis, and localised to presumptive mesoderm and ectoderm in the blastula., Whitfield T., Dev Biol. February 1, 1993; 155 (2): 361-70.                  


Effect of over-expression of bacterial ribonuclease H on the utility of antisense MYC oligodeoxynucleotides in the monocytic leukemia cell line U937., Rosolen A., Biochimie. January 1, 1993; 75 (1-2): 79-87.


The role of protein kinase C in reorganization of the cortical cytoskeleton during the transition from oocyte to fertilization-competent egg., Capco DG., J Exp Zool. December 15, 1992; 264 (4): 395-405.


Identification of a new interferon-alpha/beta-inducible DNA-binding protein that interacts with the regulatory element A of 2',5'-oligoadenylate synthetase ME-12 gene., Yan C., J Interferon Res. December 1, 1992; 12 (6): 425-30.


Nuclear transport and phosphorylation of the RNA binding Xenopus zinc finger protein XFG 5-1., van Wijk I., Mech Dev. November 1, 1992; 39 (1-2): 63-72.              


Stratified organization of the nicotinic acetylcholine receptor channel., Devillers-Thiéry A., Neuroreport. November 1, 1992; 3 (11): 1001-4.


Maturation-specific deadenylation in Xenopus oocytes requires nuclear and cytoplasmic factors., Varnum SM., Dev Biol. October 1, 1992; 153 (2): 283-90.


Intracellular distribution of a nuclear localization signal binding protein., Li R., Exp Cell Res. October 1, 1992; 202 (2): 355-65.


A GTPase controls cell-substrate adhesion in Xenopus XTC fibroblasts., Symons MH., J Cell Biol. September 1, 1992; 118 (5): 1235-44.


Temperature-dependent protein folding in vivo--lower growth temperature increases yield of two genetic variants of Xenopus laevis Cu,Zn superoxide dismutase in Escherichia coli., Battistoni A., Biochem Biophys Res Commun. August 14, 1992; 186 (3): 1339-44.


Differential regulation and polyadenylation of transferrin mRNA in Xenopus liver and oviduct., Pastori RL., J Steroid Biochem Mol Biol. August 1, 1992; 42 (7): 649-57.


Assembly of a tail-less mutant of the intermediate filament protein, vimentin, in vitro and in vivo., Eckelt A., Eur J Cell Biol. August 1, 1992; 58 (2): 319-30.


Comparative analysis of the intracellular localization of c-Myc, c-Fos, and replicative proteins during cell cycle progression., Vriz S., Mol Cell Biol. August 1, 1992; 12 (8): 3548-55.


Intracellular distribution of the U1A protein depends on active transport and nuclear binding to U1 snRNA., Kambach C., J Cell Biol. July 1, 1992; 118 (1): 11-21.


Export of mRNA from microinjected nuclei of Xenopus laevis oocytes., Dargemont C., J Cell Biol. July 1, 1992; 118 (1): 1-9.

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