Global ETD Search
Search theses and dissertations gathered from participating repositories worldwide. Every result links back to the library that holds it. No account is needed.
Results
Showing 1 to 5 of 5 for “"U2AF35"”.
-
Characterization of U2AF26, a Paralog of the Splicing Factor U2AF35
… of a large subunit, U2AF65, and a small subunit, U2AF35. U2AF65 recognizes the pyrimidine tract and U2AF35 binds to the AG dinucleotide, both of which are specific 3' splice site sequence motifs. In the present work U2AF26, a paralog of the conventional U2AF35, has been studied. U2AF26 shares 84% …
-
The PHD finger protein 5 is a part of the spliceosome and acts as a DNA-binding protein
Vier Proteine: U2AF35, SRp40, mDomino und Ddx1 wurden durch Screening Yeast-two hybride-Bibliothek als Partner des PHF 5a-Protein gefunden. Proteininteraktionen wurden in-vitro und in-vivo bestätigt. Die für Bindungen verantwortlichen Domäne wurden als RS Domäne (reich an Arginin-Serin) …
-
Su onkologinėmis ligomis siejamas pre-iRNR splaisingas: splaisingo veiksnių ir hipoksinės mikroaplinkos tyrimas /
… in the expression of SRSF1, SRSF2, U2AF65, U2AF35 and KHSRP splicing factors and tumor-associated Fas and Rac1 mRNA isoforms in tumor tissues and commonly used tumor cell lines. Our results indicate that reduced oxygen content in the cell environment (hypoxia) affects Fas pre-mRNA …
-
Analysis of Interrelationships Among NAD+, PARP1, ADP-Ribosylation, and Splicing in Murine Embryonic Stem Cells
… include core spliceosome components, such as U2AF35 and U2AF65, whose splicing functions are modulated by PARP1-mediated site-specific ADP-ribosylation. In addition, I observed a genome-wide dysregulation of splicing events upon loss of PARP1 in transcriptomic analysis. These results …
-
Essential Protein Factors in pre-mRNA splicing : A Structural Study by Nuclear Magnetic Resonance Spectroscopy
… to that between the large (U2AF65) and small (U2AF35) subunits of U2AF. This RRM-mediated protein interaction provides an example of how conserved structural folds have evolved different molecular functions.