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Biology subjects

Cerra, A.

Publications and source records attributed to Cerra, A..

2 recordsLinked to original sources

ZnF-UBP domains regulate deubiquitinase activity by relieving ubiquitin product inhibition

Most ubiquitin specific protease (USP) deubiquitinases (DUBs) combine non-selective catalytic domains with one or multiple exo-domains that contribute substrate specificity and localisation, but are generally poorly characterised. Zinc-Finger UBP (ZnF-UBP) domains exist in 12 USP DUBs, yet their function is unclear. We here comprehensively analyse human ZnF-UBP domains, and reveal that 8 of 14 bind ubiquitin (Ub), via an unattached Ub C-terminal GlyGly motif. We focus on USP16, a nucleosome DUB with activity for Ub and Ub-like modifiers, and show that whilte its ZnF-UBP domain can bind substrates, it is also a crucial contributor to enzyme kinetics. Slow Ub release from the catalytic domain after cleavage causes product inhibition, which is overcome in cis by ZnF-UBP-mediated product release. Interestingly, supplying a high affinity product-capturing ZnF-UBP domain in trans, activates USP16 and other USP enzymes. Our data shows the importance of product inhibition as a regulatory mechanism in DUBs, and exemplifies the unappreciated role of exo-domains in regulating DUB function beyond substrate binding.

biochemistry↗

The RBR E3 ubiquitin ligase HOIL-1 can ubiquitinate diverse non-proteinaceous substrates in vitro

HOIL-1 is a RING-between-RING (RBR)-family E3 ubiquitin ligase and component of the linear ubiquitin chain assembly complex (LUBAC). While most E3 ubiquitin ligases conjugate ubiquitin to protein lysine sidechains, HOIL-1 has been reported to ubiquitinate hydroxyl groups in protein serine and threonine sidechains and glucosaccharides, such as glycogen and its building block maltose, in vitro. However, HOIL-1 substrate specificity is currently poorly defined. Here we show that HOIL-1 is unable to ubiquitinate lysine but can efficiently ubiquitinate serine as well as a variety of model and physiologically relevant di- and monosaccharides in vitro. We identify a critical catalytic histidine residue, His510, in the flexible catalytic site of HOIL-1 that enables this O-linked ubiquitination and prohibits ubiquitin discharge onto lysine sidechains. Finally, we utilise HOIL-1s in vitro non-proteinaceous ubiquitination activity and an engineered, constitutively active HOIL-1 variant to produce preparative amounts of different ubiquitinated saccharides that can be used as tool compounds and standards in the rapidly emerging field of non-proteinaceous ubiquitination.

biochemistry↗