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Summary Expression Phenotypes Gene Literature (29) GO Terms (2) Nucleotides (135) Proteins (24) Interactants (258) Wiki
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Papers associated with coil



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Genome evolution in the allotetraploid frog Xenopus laevis., Session AM, Uno Y, Kwon T, Chapman JA, Toyoda A, Takahashi S, Fukui A, Hikosaka A, Suzuki A, Kondo M, van Heeringen SJ, Quigley I, Heinz S, Ogino H, Ochi H, Hellsten U, Lyons JB, Simakov O, Putnam N, Stites J, Kuroki Y, Tanaka T, Michiue T, Watanabe M, Bogdanovic O, Lister R, Georgiou G, Paranjpe SS, van Kruijsbergen I, Shu S, Carlson J, Kinoshita T, Ohta Y, Mawaribuchi S, Jenkins J, Grimwood J, Schmutz J, Mitros T, Mozaffari SV, Suzuki Y, Haramoto Y, Yamamoto TS, Takagi C, Heald R, Miller K, Haudenschild C, Kitzman J, Nakayama T, Izutsu Y, Robert J, Fortriede J, Burns K, Lotay V, Karimi K, Yasuoka Y, Dichmann DS, Flajnik MF, Houston DW, Shendure J, DuPasquier L, Vize PD, Zorn AM, Ito M, Marcotte EM, Wallingford JB, Ito Y, Asashima M, Ueno N, Matsuda Y, Veenstra GJ, Fujiyama A, Harland RM, Taira M, Rokhsar DS., Nature. October 20, 2016; 538 (7625): 336-343.                              


Amyloids assemble as part of recognizable structures during oogenesis in Xenopus., Hayes MH, Weeks DL., Biol Open. June 15, 2016; 5 (6): 801-6.        


Low-voltage scanning electron microscopy study of lampbrush chromosomes and nuclear bodies in avian and amphibian oocytes., Kulikova T, Khodyuchenko T, Petrov Y, Krasikova A., Sci Rep. January 22, 2016; 6 36878.              


Soft viscoelastic properties of nuclear actin age oocytes due to gravitational creep., Feric M, Broedersz CP, Brangwynne CP., Sci Rep. November 18, 2015; 5 16607.            


A nuclear F-actin scaffold stabilizes ribonucleoprotein droplets against gravity in large cells., Feric M, Brangwynne CP., Nat Cell Biol. October 1, 2013; 15 (10): 1253-9.        


Cajal body surveillance of U snRNA export complex assembly., Suzuki T, Izumi H, Ohno M., J Cell Biol. August 23, 2010; 190 (4): 603-12.            


Cajal bodies and histone locus bodies in Drosophila and Xenopus., Nizami ZF, Deryusheva S, Gall JG., Cold Spring Harb Symp Quant Biol. January 1, 2010; 75 313-20.


Small Cajal body-specific RNAs of Drosophila function in the absence of Cajal bodies., Deryusheva S, Gall JG., Mol Biol Cell. December 1, 2009; 20 (24): 5250-9.


Sm proteins, the constituents of the spliceosome, are components of nuage and mitochondrial cement in Xenopus oocytes., Bilinski SM, Jaglarz MK, Szymanska B, Etkin LD, Kloc M., Exp Cell Res. September 10, 2004; 299 (1): 171-8.


Dynamics of coilin in Cajal bodies of the Xenopus germinal vesicle., Deryusheva S, Gall JG., Proc Natl Acad Sci U S A. April 6, 2004; 101 (14): 4810-4.


NO66, a highly conserved dual location protein in the nucleolus and in a special type of synchronously replicating chromatin., Eilbracht J, Reichenzeller M, Hergt M, Schnölzer M, Heid H, Stöhr M, Franke WW, Schmidt-Zachmann MS., Mol Biol Cell. April 1, 2004; 15 (4): 1816-32.                            


U4 snRNA nucleolar localization requires the NHPX/15.5-kD protein binding site but not Sm protein or U6 snRNA association., Gerbi SA, Borovjagin AV, Odreman FE, Lange TS., J Cell Biol. September 1, 2003; 162 (5): 821-32.                  


Steady-state dynamics of Cajal body components in the Xenopus germinal vesicle., Handwerger KE, Murphy C, Gall JG., J Cell Biol. February 17, 2003; 160 (4): 495-504.                    


Accessory nuclei revisited: the translocation of snRNPs from the germinal vesicle to the periphery of the future embryo., Biliński SM, Kloc M., Chromosoma. March 1, 2002; 111 (1): 62-8.


Two splice variants of Nopp140 in Drosophila melanogaster., Waggener JM, DiMario PJ., Mol Biol Cell. January 1, 2002; 13 (1): 362-81.


Assembly of U7 small nuclear ribonucleoprotein particle and histone RNA 3' processing in Xenopus egg extracts., Müller B, Link J, Smythe C., J Biol Chem. August 11, 2000; 275 (32): 24284-93.


Structure and characterization of the murine p80 coilin gene, Coil., Tucker KE, Massello LK, Gao L, Barber TJ, Hebert MD, Chan EK, Matera AG., J Struct Biol. April 1, 2000; 129 (2-3): 269-77.


Gemin4. A novel component of the SMN complex that is found in both gems and nucleoli., Charroux B, Pellizzoni L, Perkinson RA, Yong J, Shevchenko A, Mann M, Dreyfuss G., J Cell Biol. March 20, 2000; 148 (6): 1177-86.                


Coilin shuttles between the nucleus and cytoplasm in Xenopus oocytes., Bellini M, Gall JG., Mol Biol Cell. October 1, 1999; 10 (10): 3425-34.


The stem-loop binding protein (SLBP1) is present in coiled bodies of the Xenopus germinal vesicle., Abbott J, Marzluff WF, Gall JG., Mol Biol Cell. February 1, 1999; 10 (2): 487-99.              


Coilin can form a complex with the U7 small nuclear ribonucleoprotein., Bellini M, Gall JG., Mol Biol Cell. October 1, 1998; 9 (10): 2987-3001.


Coiled bodies without coilin., Bauer DW, Gall JG., Mol Biol Cell. January 1, 1997; 8 (1): 73-82.


Prenucleolar bodies contain coilin and are assembled in Xenopus egg extract depleted of specific nucleolar proteins and U3 RNA., Bell P, Scheer U., J Cell Sci. January 1, 1997; 110 ( Pt 1) 43-54.


[Spheres from the oocyte nuclei of the house cricket and the damselfly contain pre-mRNA splicing and pre-rRNA processing factors]., Tsvetkov AG, Gruzova MH, Gall J., Tsitologiia. January 1, 1996; 38 (3): 311-8.


Is the sphere organelle/coiled body a universal nuclear component?, Gall JG, Tsvetkov A, Wu Z, Murphy C., Dev Genet. January 1, 1995; 16 (1): 25-35.


Human p80-coilin is targeted to sphere organelles in the amphibian germinal vesicle., Wu Z, Murphy C, Gall JG., Mol Biol Cell. October 1, 1994; 5 (10): 1119-27.


An RNase-sensitive particle containing Drosophila melanogaster DNA topoisomerase II., Meller VH, McConnell M, Fisher PA., J Cell Biol. September 1, 1994; 126 (6): 1331-40.


In vitro assembly of coiled bodies in Xenopus egg extract., Bauer DW, Murphy C, Wu Z, Wu CH, Gall JG., Mol Biol Cell. June 1, 1994; 5 (6): 633-44.


Identification and characterization of a sphere organelle protein., Tuma RS, Stolk JA, Roth MB., J Cell Biol. August 1, 1993; 122 (4): 767-73.

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