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Ubiquitination by HECT E3 enzymes regulates myriad processes, including tumor suppression, transcription, protein trafficking, and degradation. HECT E3s use a two-step mechanism to ligate ubiquitin to target proteins. The first step is guided by interactions between the catalytic HECT domain and the E2∼ubiquitin intermediate, which promote formation of a transient, thioester-bonded HECT∼ubiquitin intermediate. Here we report that the second step of ligation is mediated by a distinct catalytic architecture established by both the HECT E3 and its covalently linked ubiquitin. The structure of a chemically trapped proxy for an E3∼ubiquitin-substrate intermediate reveals three-way interactions between ubiquitin and the bilobal HECT domain orienting the E3∼ubiquitin thioester bond for ligation, and restricting the location of the substrate-binding domain to prioritize target lysines for ubiquitination. The data allow visualization of an E2-to-E3-to-substrate ubiquitin transfer cascade, and show how HECT-specific ubiquitin interactions driving multiple reactions are repurposed by a major E3 conformational change to promote ligation. DOI:http://dx.doi.org/10.7554/eLife.00828.001.
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http://dx.doi.org/10.7554/eLife.00828 | DOI Listing |
PLoS One
August 2025
Department of Pre-clinic and Applied Animal Science, Faculty of Veterinary Science, Mahidol University, Nakhon Pathom, Thailand.
Feline mammary carcinoma (FMC) is the most prevalent reproductive tumor in queens and is characterized by aggressive metastatic progression and short survival. Protein phosphorylation is a crucial process in cell regulation, with dysregulation linked to cancer progression, including human breast cancer. Although phosphoproteins have emerged as diagnostic and predictive markers in human breast cancer, knowledge remains limited on their role in FMC.
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August 2025
Department of Orthopedics, Hunan Provincial People's Hospital (The First-Affiliated Hospital of Hunan Normal University), Changsha, Hunan Province, People's Republic of China.
Osteoarthritis (OA) is a common joint disease, and chondrocyte extracellular matrix (ECM) degradation was closely associated with its progression. This study investigated the regulatory mechanisms of ECM degradation during OA development. A rat model of OA was established by anterior cruciate ligament transection (ACL-T) and interleukin-1 beta (IL-1β)-stimulated rat chondrocytes were used to simulate OA in vitro.
View Article and Find Full Text PDFCarcinogenesis
August 2025
Department of Breast Surgery, Jiangxi Provincial People's Hospital, Nanchang, Jiangxi, 330006, China.
CMTM (CKLF-like MARVEL transmembrane domain-containing) proteins play pivotal roles in tumorigenesis and cancer progression across various malignancies. However, their expression profiles and regulatory mechanisms in distinct subtypes of breast cancer remain largely undefined. In this study, we systematically analyzed the expression of all nine CMTM family members across major molecular subtypes of breast cancer, including Luminal A, Luminal B, HER2-positive (HER2+), and triple-negative breast cancer (TNBC).
View Article and Find Full Text PDFCommun Biol
July 2025
Structural Genomics Consortium, University of Toronto, Toronto, ON, Canada.
Human DCAF1 is a multidomain protein that plays a critical role in protein homeostasis. Its WDR domain functions as a substrate recruitment module for RING-type CRL4 and HECT family EDVP E3 ubiquitin ligases, enabling the ubiquitination and proteasomal degradation of specific substrates. DCAF1's activity has been implicated in cell proliferation and is documented to promote tumorigenesis.
View Article and Find Full Text PDFCell Commun Signal
July 2025
Department of Physiology, Yong Loo Lin School of Medicine, National University of Singapore, Singapore, Singapore.
The degradation of voltage-gated calcium channels (VGCC), which are key determinants of neuronal excitability and muscle contraction, is crucial for regulating calcium homeostasis and can be targeted for analgesic drug discovery. Molecularly, both the ubiquitin-proteasomal system and lysosomal pathways play critical roles in VGCC turnover with the involvement of ubiquitin-conjugating E2 enzyme UBE2L3, multiple ubiquitin-ligating E3 ligases including Rfp2, Mdm2, Nedd4-1 and WWP1, and deubiquitinase USP5. Physiologically, a blocking peptide and small molecules interfering with the Ca3.
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