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Summary Expression Phenotypes Gene Literature (66) GO Terms (10) Nucleotides (2659) Proteins (65) Interactants (381) Wiki
XB--972234

Papers associated with rpsa



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Reactivation of DNA replication in nuclei from terminally differentiated cells: nuclear membrane permeabilization is required for initiation in Xenopus egg extract., Leno GH, Munshi R., Exp Cell Res. May 1, 1997; 232 (2): 412-9.


Laminin-induced clustering of dystroglycan on embryonic muscle cells: comparison with agrin-induced clustering., Cohen MW, Jacobson C, Yurchenco PD, Morris GE, Carbonetto S., J Cell Biol. March 10, 1997; 136 (5): 1047-58.                                              


The cell nucleus in early bovine and caprine preimplantation embryos: fine structural cytochemistry and immunoelectron microscopy., Kopecny V, Biggiogera M, Pivko J, Grafenau P, Pavlok A, Malatesta M, Martin TE, Fakan S., Eur J Cell Biol. August 1, 1996; 70 (4): 361-72.


The role of protein phosphorylation in the assembly of a replication competent nucleus: investigations in Xenopus egg extracts using the cyanobacterial toxin microcystin-LR., Murphy J, Crompton CM, Hainey S, Codd GA, Hutchison CJ., J Cell Sci. January 1, 1995; 108 ( Pt 1) 235-44.


Human and Xenopus mo15 messenger-RNA are highly conserved but show different patterns of expression in adult tissues., Kobelt D, Karn T, Hock B, Holtrich U, Brauninger A, Wolf G, Strebhardt K, Rubsamenwaigmann K., Oncol Rep. November 1, 1994; 1 (6): 1269-75.


Cloning and expression of cDNA encoding Xenopus laevis bone morphogenetic protein-1 during early embryonic development., Maéno M, Xue Y, Wood TI, Ong RC, Kung HF., Gene. December 8, 1993; 134 (2): 257-61.      


The MO15 gene encodes the catalytic subunit of a protein kinase that activates cdc2 and other cyclin-dependent kinases (CDKs) through phosphorylation of Thr161 and its homologues., Fesquet D, Labbé JC, Derancourt J, Capony JP, Galas S, Girard F, Lorca T, Shuttleworth J, Dorée M, Cavadore JC., EMBO J. August 1, 1993; 12 (8): 3111-21.


Function and spatial distribution in developing chick retina of the laminin receptor alpha 6 beta 1 and its isoforms., de Curtis I, Reichardt LF., Development. June 1, 1993; 118 (2): 377-88.


The expression of epidermal antigens in Xenopus laevis., Itoh K, Yamashita A, Kubota HY., Development. September 1, 1988; 104 (1): 1-14.                        


Dogfish alpha-crystallin sequences. Comparison with small heat shock proteins and Schistosoma egg antigen., de Jong WW, Leunissen JA, Leenen PJ, Zweers A, Versteeg M., J Biol Chem. April 15, 1988; 263 (11): 5141-9.


Changes in the nuclear lamina composition during early development of Xenopus laevis., Stick R, Hausen P., Cell. May 1, 1985; 41 (1): 191-200.                


Cell type-specific expression of nuclear lamina proteins during development of Xenopus laevis., Benavente R, Krohne G, Franke WW., Cell. May 1, 1985; 41 (1): 177-90.                      


Distribution and utilization of 5 S-RNA-binding proteins during the development of Xenopus oocytes., Johnson RM, Barrett P, Sommerville J., Eur J Biochem. November 2, 1984; 144 (3): 503-8.


Immunological identity of proteins that bind stored 5S RNA in Xenopus oocytes., Barrett P, Johnson RM, Sommerville J., Exp Cell Res. August 1, 1984; 153 (2): 299-307.

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