Showing results (1-10 of 13) with videos related to

Sort By:
Pageof 2
Experimental Cell Research|January 18, 2005
CIR, a corepressor of CBF1, binds to PAP-1 and effects alternative splicingHiroshi Maita, Hirotake Kitaura, Hiroyoshi Ariga, et al.
Experimental Cell Research|November 16, 2004
Association of PAP-1 and Prp3p, the products of causative genes of dominant retinitis pigmentosa, in the tri-snRNP complexHiroshi Maita, Hirotake Kitaura, Hiroyoshi Ariga, et al.
International Journal of Oncology|November 4, 2009
Oxidation of DJ-1-dependent cell transformation through direct binding of DJ-1 to PTENYun-Chul Kim, Hirotake Kitaura, Takahiro Taira, et al.
Experimental Cell Research|February 19, 2008
Negative regulation of the Wnt signal by MM-1 through inhibiting expression of the wnt4 geneTatsuya Yoshida, Hirotake Kitaura, Yuko Hagio, et al.
Plos One|July 31, 2012
Rabring7 degrades c-Myc through complex formation with MM-1Rina Narita, Hirotake Kitaura, Ayako Torii, et al.
The Journal of Biological Chemistry|April 12, 2011
Prefoldin subunits are protected from ubiquitin-proteasome system-mediated degradation by forming complex with other constituent subunitsMakoto Miyazawa, Erika Tashiro, Hirotake Kitaura, et al.
Experimental Cell Research|October 12, 2004
PAP-1, the mutated gene underlying the RP9 form of dominant retinitis pigmentosa, is a splicing factorHiroshi Maita, Hirotake Kitaura, T Jeffrey Keen, et al.
Gene|November 24, 2004
A novel nucleolar protein, PAPA-1, induces growth arrest as a result of cell cycle arrest at the G1 phaseTaruho S Kuroda, Hiroshi Maita, Takanori Tabata, et al.
Pageof 2