Target intelligence / Profile preview

Homologous to E6AP carboxyl terminus E3 ubiquitin ligase (HECT E3 ligase) (HECT E3 ligase)

Target
HECT E3 ligase
Molecular classification
Enzyme, E3 ubiquitin ligase
01

Overview

Homologous to E6AP carboxyl terminus (HECT) E3 ubiquitin ligases are a family of enzymes that play a pivotal role in the ubiquitin-proteasome system by catalyzing the final step of ubiquitin transfer to substrate proteins. Unlike RING-type ligases, HECT ligases are unique in that they form a covalent thioester intermediate with ubiquitin via a conserved cysteine residue within their C-terminal HECT domain [Source: PubMed: 21670212]. The human genome encodes 28 HECT ligases, which are subdivided into the NEDD4-like, HERC, and "other" subfamilies based on their N-terminal architecture [Source: UniProt: Family HECT]. These enzymes regulate critical cellular functions, including protein trafficking, DNA repair, and signal transduction pathways such as TGF-beta and Wnt signaling. Malfunction or expression changes in HECT ligases are linked to a variety of pathologies, including cancers (where they can act as either oncoproteins or tumor suppressors), neurodegenerative disorders like Angelman syndrome, and viral infections [Source: PubMed: 30335751]. Because of their direct catalytic role, HECT ligases are attractive therapeutic targets for small-molecule inhibition or modulation, with compounds like Heclin and arsenic trioxide demonstrating the potential to alter disease progression by restoring protein homeostasis [Source: PubMed: 22493230, PubMed: 32814834].

Other names
HECT domain-containing E3 ubiquitin protein ligaseHECT-type E3 ligaseE3 ubiquitin-protein ligase HECT-typeHECT family E3 ligase
02

Mechanism of action

Inhibition of the catalytic HECT domain to prevent the formation of the E3-ubiquitin thioester intermediate, thereby blocking substrate ubiquitination and subsequent degradation or signaling.

03

Biological functions

Protein ubiquitinationProteasomal degradationSignal transductionCell cycle regulationProtein traffickingDNA repair
04

Disease associations

CancerNeurodegenerative diseaseAngelman syndromeCardiovascular diseaseInfectionInflammation
05

Safety considerations

Systemic proteotoxicity due to disruption of protein homeostasisOff-target effects within the HECT family due to domain conservationUnintended stabilization of oncogenic or tumor-suppressive proteins
06

Interacting drugs

Arsenic trioxide

4 more in the full profile.

07

Biomarkers

UBE3A protein levelsNEDD4 expression levelsSMURF1/2 expression levels

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