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Showing results (81-90 of 99) with videos related to

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Molecular and Cellular Biology|April 21, 2001
Common properties of nuclear body protein SP100 and TIF1alpha chromatin factor: role of SUMO modificationJ S Seeler, A Marchio, R Losson, et al.
The Journal of General Virology|July 1, 1996
Assembly of virus-like particles in insect cells infected with a baculovirus containing a modified coat protein gene of potato leafroll luteovirusJ W Lamb, G H Duncan, B Reavy, et al.
The Journal of Biological Chemistry|April 25, 2000
NF-kappaB inhibits apoptosis in murine mammary epitheliaR W Clarkson, J L Heeley, R Chapman, et al.
The Journal of Biological Chemistry|March 29, 1996
Role of IkappaBalpha ubiquitination in signal-induced activation of NFkappaB in vivoM Roff, J Thompson, M S Rodriguez, et al.
The Journal of Cell Biology|January 29, 2000
Cytokine-induced nuclear factor kappa B activation promotes the survival of developing neuronsG Middleton, M Hamanoue, Y Enokido, et al.
Oncogene|March 17, 2015
PML isoforms IV and V contribute to adenovirus-mediated oncogenic transformation by functionally inhibiting the tumor-suppressor p53P Wimmer, J Berscheminski, P Blanchette, et al.
Oncogene|May 24, 2000
An N-terminal p14ARF peptide blocks Mdm2-dependent ubiquitination in vitro and can activate p53 in vivoC A Midgley, J M Desterro, M K Saville, et al.
The Journal of Biological Chemistry|July 14, 2001
Polymeric chains of SUMO-2 and SUMO-3 are conjugated to protein substrates by SAE1/SAE2 and Ubc9M H Tatham, E Jaffray, O A Vaughan, et al.
Oncogene|March 21, 2007
SUMO modification of the DEAD box protein p68 modulates its transcriptional activity and promotes its interaction with HDAC1A-M F Jacobs, S M Nicol, R G Hislop, et al.
Oncogene|June 6, 1996
Identification of lysine residues required for signal-induced ubiquitination and degradation of I kappa B-alpha in vivoM S Rodriguez, J Wright, J Thompson, et al.
Pageof 10

Showing results (81-90 of 99) with videos related to

Sort By:
Pageof 10
Molecular and Cellular Biology|April 21, 2001
Common properties of nuclear body protein SP100 and TIF1alpha chromatin factor: role of SUMO modificationJ S Seeler, A Marchio, R Losson, et al.
The Journal of General Virology|July 1, 1996
Assembly of virus-like particles in insect cells infected with a baculovirus containing a modified coat protein gene of potato leafroll luteovirusJ W Lamb, G H Duncan, B Reavy, et al.
The Journal of Biological Chemistry|April 25, 2000
NF-kappaB inhibits apoptosis in murine mammary epitheliaR W Clarkson, J L Heeley, R Chapman, et al.
The Journal of Biological Chemistry|March 29, 1996
Role of IkappaBalpha ubiquitination in signal-induced activation of NFkappaB in vivoM Roff, J Thompson, M S Rodriguez, et al.
The Journal of Cell Biology|January 29, 2000
Cytokine-induced nuclear factor kappa B activation promotes the survival of developing neuronsG Middleton, M Hamanoue, Y Enokido, et al.
Oncogene|March 17, 2015
PML isoforms IV and V contribute to adenovirus-mediated oncogenic transformation by functionally inhibiting the tumor-suppressor p53P Wimmer, J Berscheminski, P Blanchette, et al.
Oncogene|May 24, 2000
An N-terminal p14ARF peptide blocks Mdm2-dependent ubiquitination in vitro and can activate p53 in vivoC A Midgley, J M Desterro, M K Saville, et al.
The Journal of Biological Chemistry|July 14, 2001
Polymeric chains of SUMO-2 and SUMO-3 are conjugated to protein substrates by SAE1/SAE2 and Ubc9M H Tatham, E Jaffray, O A Vaughan, et al.
Oncogene|March 21, 2007
SUMO modification of the DEAD box protein p68 modulates its transcriptional activity and promotes its interaction with HDAC1A-M F Jacobs, S M Nicol, R G Hislop, et al.
Oncogene|June 6, 1996
Identification of lysine residues required for signal-induced ubiquitination and degradation of I kappa B-alpha in vivoM S Rodriguez, J Wright, J Thompson, et al.
Pageof 10