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Clathrin mediated endocytosis targeting chimera for targeted membrane proteins degradation and enhance CAR-T cell
Yishuang Li1,2,3,4,5, Zhihong Zhou1,2,3,4,5, Yonghui Lv1,2,3,4,5
1Department of Neurosurgery, The 2nd affiliated hospital, Jiangxi Medical College, Nanchang University, Nanchang, China.
Abstract:
Rationale: T cell exhaustion, mediated by the expression of inhibitory receptor proteins, significantly reduces their anti-tumor efficacy. Therefore, strategies aimed at degrading membrane proteins have emerged as promising approaches for enhancing the therapeutic effectiveness of Chimeric Antigen Receptor (CAR) T cells and improving cancer treatment outcomes. Methods: In this study, we developed a Clathrin-Mediated Endocytosis Targeting Chimera (CleTAC), an innovative platform designed to facilitate membrane protein degradation via the clathrin-mediated endocytosis pathway. CleTAC employs the YVKM motif to interact with the AP2 complex, driving the internalization of targeted membrane proteins (proteins of interest, POI) along with associated cell membrane components. These internalized complexes are subsequently trafficked to lysosomes for degradation. We conducted multiple validations using flow cytometry, Western blotting, and in vitro and in vivo experiments to verify its degradation efficiency. Additionally, we integrated CleTAC targeting CTLA4 membrane proteins into a CAR construct and evaluated its impact on CAR-T cell functionality and tumor suppressive efficacy using both cellular assays and animal tumor models. Results: We demonstrated that CleTAC effectively and specifically mediates the degradation of EGFP and CTLA4 proteins on the cell surface. When incorporated into a CAR construct, CleTAC targeting CTLA4 enhanced CAR-T cell anti-tumor activity, as evidenced by improved functional assays and tumor suppression in animal models. These findings establish CleTAC as a versatile and effective tool for modulating membrane protein levels and enhance anti-tumor efficacy in CAR-T cells. Conclusions: Our results highlight CleTAC as a promising therapeutic tool with substantial clinical potential to significantly enhance CAR-T cell therapy and advance current oncology treatment strategies.
Insights
A novel Clathrin-Mediated Endocytosis Targeting Chimera (CleTAC) platform degrades membrane proteins, enhancing Chimeric Antigen Receptor (CAR) T cell anti-tumor activity and cancer treatment efficacy.
Area of Science:
- Immunology
- Cell Biology
- Biotechnology
Background:
- T cell exhaustion, driven by inhibitory receptors, limits anti-tumor responses.
- Targeting membrane proteins for degradation offers a strategy to boost Chimeric Antigen Receptor (CAR) T cell therapy.
- Enhancing CAR T cell efficacy is crucial for improving cancer treatment outcomes.
Purpose of the Study:
- To develop and validate a novel platform, Cleathrin-Mediated Endocytosis Targeting Chimera (CleTAC), for targeted membrane protein degradation.
- To assess the efficacy of CleTAC in enhancing CAR T cell functionality and anti-tumor activity.
- To explore the therapeutic potential of CleTAC in cancer treatment.
Main Methods:
- Developed CleTAC platform utilizing the YVKM motif for AP2 complex interaction and subsequent lysosomal degradation.
- Validated CleTAC-mediated protein degradation using flow cytometry, Western blotting, and in vitro/in vivo experiments.
- Integrated CleTAC targeting CTLA4 into a CAR construct and evaluated its impact on CAR-T cell function and tumor suppression in preclinical models.
Main Results:
- CleTAC demonstrated effective and specific degradation of target membrane proteins like EGFP and CTLA4.
- Incorporation of CleTAC into CAR constructs significantly enhanced CAR-T cell anti-tumor activity.
- Improved functional assays and tumor suppression in animal models confirmed CleTAC's efficacy.
Conclusions:
- CleTAC is a versatile and effective tool for modulating membrane protein levels, particularly for enhancing CAR T cell therapy.
- The CleTAC platform shows significant clinical potential for advancing oncology treatment strategies.
- Targeted membrane protein degradation via CleTAC offers a promising approach to overcome T cell exhaustion and improve cancer immunotherapy.
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