Literature DB >> 10918611

SCF(beta-TRCP) and phosphorylation dependent ubiquitinationof I kappa B alpha catalyzed by Ubc3 and Ubc4.

P Strack1, M Caligiuri, M Pelletier, M Boisclair, A Theodoras, P Beer-Romero, S Glass, T Parsons, R A Copeland, K R Auger, P Benfield, L Brizuela, M Rolfe.   

Abstract

NF kappa B is an important transcriptional regulator of multiple pro-inflammatory genes. In non-stimulated cells NF kappa B is anchored in the cytoplasm via the inhibitory protein I kappa B alpha. Following exposure to diverse pro-inflammatory signals (e.g. TNF alpha, IL1, LPS) various signal transduction cascades are initiated converging on the I kappa B kinase (IKK). IKK phosphorylates I kappa B alpha on serines 32 and 36 signaling the inhibitory protein for ubiquitin-mediated degradation. The SCF beta-TRCP complex is the ubiquitin ligase responsible for mediating phosphorylation dependent ubiquitination of I kappa B alpha. Here we reconstitute phosphorylation dependent ubiquitination of I kappa B alpha using recombinant components. Our results suggest that the cullin specificity of the SCF complex may reflect its ability to associate with Rbx1. We demonstrate specific ubiquitination of I kappa B alpha by Ubc3 and Ubc4 in a phosphorylation and SCF beta-TRCP dependent manner and that both are capable of associating with the SCF beta-TRCP complex isolated from human cells. Finally, we show that Ubc4 is in excess to Ubc3 in THP.1 cells and 19 times more efficient in catalyzing the reaction, suggesting that Ubc4 is the preferentially used Ubc in this reaction in vivo. Our results also suggest that ubiquitin is transferred directly from the Ubc to phospho-I kappa B alpha in a SCF beta-TRCP dependent reaction. Oncogene (2000) 19, 3529 - 3536

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Year:  2000        PMID: 10918611     DOI: 10.1038/sj.onc.1203647

Source DB:  PubMed          Journal:  Oncogene        ISSN: 0950-9232            Impact factor:   9.867


  20 in total

1.  Pds1 phosphorylation in response to DNA damage is essential for its DNA damage checkpoint function.

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2.  Differentiation of Hdm2-mediated p53 ubiquitination and Hdm2 autoubiquitination activity by small molecular weight inhibitors.

Authors:  Zhihong Lai; Tao Yang; Young B Kim; Thais M Sielecki; Melody A Diamond; Peter Strack; Mark Rolfe; Maureen Caligiuri; Pamela A Benfield; Kurt R Auger; Robert A Copeland
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Review 3.  DEPTOR ubiquitination and destruction by SCF(β-TrCP).

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Review 4.  NF-kappaB, a pivotal transcription factor in silica-induced diseases.

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Review 6.  Targeting the ubiquitin pathway for cancer treatment.

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Journal:  Biochim Biophys Acta       Date:  2014-12-04

7.  Regulation of I(kappa)B kinase complex by phosphorylation of (gamma)-binding domain of I(kappa)B kinase (beta) by Polo-like kinase 1.

Authors:  Tomoyasu Higashimoto; Nymph Chan; Yung-Kang Lee; Ebrahim Zandi
Journal:  J Biol Chem       Date:  2008-10-27       Impact factor: 5.157

8.  Modulation of SCF beta-TrCP-dependent I kappaB alpha ubiquitination by hydrogen peroxide.

Authors:  Sami Banerjee; Jaroslaw W Zmijewski; Emmanuel Lorne; Gang Liu; Yonggang Sha; Edward Abraham
Journal:  J Biol Chem       Date:  2009-11-20       Impact factor: 5.157

Review 9.  An evolving role for DEPTOR in tumor development and progression.

Authors:  Zhiwei Wang; Jiateng Zhong; Hiroyuki Inuzuka; Daming Gao; Shavali Shaik; Fazlul H Sarkar; Wenyi Wei
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10.  An evolutionarily conserved innate immunity protein interaction network.

Authors:  Lesly De Arras; Amara Seng; Brad Lackford; Mohammad R Keikhaee; Bruce Bowerman; Jonathan H Freedman; David A Schwartz; Scott Alper
Journal:  J Biol Chem       Date:  2012-12-03       Impact factor: 5.157

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