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Skp1: Implications in cancer and SCF-oriented anti-cancer drug discovery
Muzammal Hussain1, Yongzhi Lu2, Yong-Qiang Liu3
1State Key Laboratory of Respiratory Disease, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, 190 Kaiyuan Avenue, Science Park, Guangzhou, 510530, PR China; University of Chinese Academy of Sciences, Beijing, 100049, PR China.
Abstract:
In the last decade, the ubiquitin proteasome system (UPS), in general, and E3 ubiquitin ligases, in particular, have emerged as valid drug targets for the development of novel anti-cancer therapeutics. Cullin RING Ligases (CRLs), which can be classified into eight groups (CRL1-8) and comprise approximately 200 members, represent the largest family of E3 ubiquitin ligases which facilitate the ubiquitination-derived proteasomal degradation of a myriad of functionally and structurally diverse substrates. S phase kinase-associated protein 1 (Skp1)-Cullin1-F-Box protein (SCF) complexes are the best characterized among CRLs, which play crucial roles in numerous cellular processes and physiological dysfunctions, such as in cancer biology. Currently, there is growing interest in developing SCF-targeting anti-cancer therapies for clinical application. Indeed, the research in this field has seen some progress in the form of cullin neddylation- and Skp2-inhibitors. However, it still remains an underdeveloped area and needs to design new strategies for developing improved form of therapy. In this review, we venture a novel strategy that rational pharmacological targeting of Skp1, a central regulator of SCF complexes, may provide a novel avenue for SCF-oriented anti-cancer therapy, expected: (i) to simultaneously address the critical roles that multiple SCF oncogenic complexes play in cancer biology, (ii) to selectively target cancer cells with minimal normal cell toxicity, and (iii) to offer multiple chemical series, via therapeutic interventions at the Skp1 binding interfaces in SCF complex, thereby maximizing chances of success for drug discovery. In addition, we also discuss the challenges that might be posed regarding rational pharmacological interventions against Skp1.
Insights
Targeting Skp1, a key regulator of SCF complexes, offers a novel anti-cancer therapy strategy. This approach aims to simultaneously combat multiple SCF oncogenic roles, selectively target cancer cells, and enhance drug discovery success for cancer treatment.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- The ubiquitin proteasome system (UPS) and E3 ubiquitin ligases are crucial drug targets for anti-cancer therapeutics.
- Cullin RING Ligases (CRLs), the largest E3 ligase family, regulate protein degradation and are implicated in cancer.
- SCF complexes, a well-characterized CRL subgroup, are vital in cellular processes and cancer development.
Purpose of the Study:
- To propose a novel therapeutic strategy targeting Skp1, a central regulator of SCF complexes, for anti-cancer therapy.
- To explore the potential of Skp1-targeted interventions to address multiple SCF oncogenic roles in cancer.
- To identify strategies for selective cancer cell targeting with minimal toxicity and to facilitate drug discovery.
Main Methods:
- Review of current research on SCF complexes and their role in cancer biology.
- Exploration of Skp1 as a pharmacological target within SCF complexes.
- Discussion of potential therapeutic interventions at Skp1 binding interfaces.
Main Results:
- Skp1 targeting offers a unified approach to address diverse SCF oncogenic functions in cancer.
- Pharmacological intervention at Skp1 interfaces can lead to selective cancer cell toxicity.
- This strategy may yield multiple chemical series, improving drug discovery prospects.
Conclusions:
- Rational pharmacological targeting of Skp1 presents a promising new avenue for SCF-oriented anti-cancer therapy.
- Intervening at Skp1 binding sites could lead to effective and selective cancer treatments.
- Further research is needed to overcome challenges in developing Skp1-targeted therapies.
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