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Updated: May 12, 2026

Structure-function Studies in Mouse Embryonic Stem Cells Using Recombinase-mediated Cassette Exchange
Published on: April 27, 2017
Genetically engineered mouse models for functional studies of SKP1-CUL1-F-box-protein (SCF) E3 ubiquitin ligases
Weihua Zhou1, Wenyi Wei, Yi Sun
1Division of Radiation and Cancer Biology, Department of Radiation Oncology, University of Michigan, Ann Arbor, MI 48109, USA.
Abstract:
The SCF (SKP1 (S-phase-kinase-associated protein 1), Cullin-1, F-box protein) E3 ubiquitin ligases, the founding member of Cullin-RING ligases (CRLs), are the largest family of E3 ubiquitin ligases in mammals. Each individual SCF E3 ligase consists of one adaptor protein SKP1, one scaffold protein cullin-1 (the first family member of the eight cullins), one F-box protein out of 69 family members, and one out of two RING (Really Interesting New Gene) family proteins RBX1/ROC1 or RBX2/ROC2/SAG/RNF7. Various combinations of these four components construct a large number of SCF E3s that promote the degradation of many key regulatory proteins in cell-context, temporally, and spatially dependent manners, thus controlling precisely numerous important cellular processes, including cell cycle progression, apoptosis, gene transcription, signal transduction, DNA replication, maintenance of genome integrity, and tumorigenesis. To understand how the SCF E3 ligases regulate these cellular processes and embryonic development under in vivo physiological conditions, a number of mouse models with transgenic (Tg) expression or targeted deletion of components of SCF have been established and characterized. In this review, we will provide a brief introduction to the ubiquitin-proteasome system (UPS) and the SCF E3 ubiquitin ligases, followed by a comprehensive overview on the existing Tg and knockout (KO) mouse models of the SCF E3s, and discuss the role of each component in mouse embryogenesis, cell proliferation, apoptosis, carcinogenesis, as well as other pathogenic processes associated with human diseases. We will end with a brief discussion on the future directions of this research area and the potential applications of the knowledge gained to more effective therapeutic interventions of human diseases.
Insights
SCF (SKP1, Cullin-1, F-box protein) E3 ubiquitin ligases are crucial for cellular processes. Mouse models reveal their roles in development, proliferation, and disease, offering therapeutic insights.
Area of Science:
- Biochemistry and Molecular Biology
- Cellular Biology
- Genetics and Genomics
Background:
- SCF (SKP1, Cullin-1, F-box protein) E3 ubiquitin ligases represent the largest family of E3 ubiquitin ligases in mammals.
- These ligases are assembled from SKP1, Cullin-1, F-box proteins, and RBX1/RBX2, forming numerous combinations.
- SCF E3 ligases regulate critical cellular processes by targeting key proteins for degradation.
Purpose of the Study:
- To review the ubiquitin-proteasome system and SCF E3 ubiquitin ligases.
- To provide a comprehensive overview of transgenic and knockout mouse models for SCF E3 components.
- To discuss the roles of SCF E3 ligases in mouse embryogenesis, cell proliferation, apoptosis, and disease.
Main Methods:
- Review of existing literature on SCF E3 ubiquitin ligases.
- Analysis of transgenic (Tg) and knockout (KO) mouse models.
- Discussion of experimental findings from these mouse models.
Main Results:
- SCF E3 ligases are essential regulators of cell cycle, apoptosis, gene transcription, and DNA replication.
- Mouse models demonstrate the critical roles of SCF components in embryonic development and cell proliferation.
- Dysregulation of SCF E3 ligases is implicated in carcinogenesis and other human diseases.
Conclusions:
- SCF E3 ubiquitin ligases play fundamental roles in mammalian development and cellular homeostasis.
- Understanding SCF E3 ligase function through mouse models provides insights into disease pathogenesis.
- Further research holds potential for developing targeted therapeutic interventions for human diseases.
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