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Target specificity of the E3 ligase LUBAC for ubiquitin and NEMO relies on different minimal requirements.


ABSTRACT: The ubiquitination of NEMO with linear ubiquitin chains by the E3-ligase LUBAC is important for the activation of the canonical NF-?B pathway. NEMO ubiquitination requires a dual target specificity of LUBAC, priming on a lysine on NEMO and chain elongation on the N terminus of the priming ubiquitin. Here we explore the minimal requirements for these specificities. Effective linear chain formation requires a precise positioning of the ubiquitin N-terminal amine in a negatively charged environment on the top of ubiquitin. Whereas the RBR-LDD region on HOIP is sufficient for targeting the ubiquitin N terminus, the priming lysine modification on NEMO requires catalysis by the RBR domain of HOIL-1L as well as the catalytic machinery of the RBR-LDD domains of HOIP. Consequently, target specificity toward NEMO is determined by multiple LUBAC components, whereas linear ubiquitin chain elongation is realized by a specific interplay between HOIP and ubiquitin.

SUBMITTER: Smit JJ 

PROVIDER: S-EPMC3814767 | biostudies-literature | 2013 Nov

REPOSITORIES: biostudies-literature

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Target specificity of the E3 ligase LUBAC for ubiquitin and NEMO relies on different minimal requirements.

Smit Judith J JJ   van Dijk Willem J WJ   El Atmioui Dris D   Merkx Remco R   Ovaa Huib H   Sixma Titia K TK  

The Journal of biological chemistry 20130912 44


The ubiquitination of NEMO with linear ubiquitin chains by the E3-ligase LUBAC is important for the activation of the canonical NF-κB pathway. NEMO ubiquitination requires a dual target specificity of LUBAC, priming on a lysine on NEMO and chain elongation on the N terminus of the priming ubiquitin. Here we explore the minimal requirements for these specificities. Effective linear chain formation requires a precise positioning of the ubiquitin N-terminal amine in a negatively charged environment  ...[more]

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