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Summary Anatomy Item Literature (214) Expression Attributions Wiki
XB-ANAT-3623

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A subset of yeast snRNA's contains functional binding sites for the highly conserved Sm antigen., Riedel N., Science. January 16, 1987; 235 (4786): 328-31.


A monoclonal antibody against alpha-smooth muscle actin: a new probe for smooth muscle differentiation., Skalli O., J Cell Biol. December 1, 1986; 103 (6 Pt 2): 2787-96.


Cap trimethylation of U snRNA is cytoplasmic and dependent on U snRNP protein binding., Mattaj IW., Cell. September 12, 1986; 46 (6): 905-11.


Genetic complementation in the Xenopus oocyte: co-expression of sea urchin histone and U7 RNAs restores 3' processing of H3 pre-mRNA in the oocyte., Strub K., EMBO J. July 1, 1986; 5 (7): 1675-82.


Mesoderm induction in Xenopus laevis: a quantitative study using a cell lineage label and tissue-specific antibodies., Dale L., J Embryol Exp Morphol. October 1, 1985; 89 289-312.      


Alterations in chromatin conformation are accompanied by reorganization of nonchromatin domains that contain U-snRNP protein p28 and nuclear protein p107., Smith HC., J Cell Biol. August 1, 1985; 101 (2): 560-7.


U1 small nuclear RNA genes are subject to dosage compensation in mouse cells., Mangin M., Science. July 19, 1985; 229 (4710): 272-5.


Nuclear segregation of U2 snRNA requires binding of specific snRNP proteins., Mattaj IW., Cell. January 1, 1985; 40 (1): 111-8.


Splicing of Xenopus laevis ribosomal protein RNAs is inhibited in vivo by antisera to ribonucleoproteins containing U1 small nuclear RNA., Bozzoni I., J Mol Biol. December 25, 1984; 180 (4): 1173-8.


The cDNA sequences of the sea urchin U7 small nuclear RNA suggest specific contacts between histone mRNA precursor and U7 RNA during RNA processing., Strub K., EMBO J. December 1, 1984; 3 (12): 2801-7.


Small nuclear U-ribonucleoproteins in Xenopus laevis development. Uncoupled accumulation of the protein and RNA components., Fritz A., J Mol Biol. September 15, 1984; 178 (2): 273-85.


Splicing pathways of SV40 mRNAs in X. laevis oocytes differ in their requirements for snRNPs., Fradin A., Cell. July 1, 1984; 37 (3): 927-36.


Nucleocytoplasmic distribution of snRNPs and stockpiled snRNA-binding proteins during oogenesis and early development in Xenopus laevis., Zeller R., Cell. February 1, 1983; 32 (2): 425-34.


An atlas of notochord and somite morphogenesis in several anuran and urodelean amphibians., Youn BW., J Embryol Exp Morphol. October 1, 1980; 59 223-47.                        

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