CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Endosome-microautophagy targeting chimera (eMIATAC) for targeted proteins degradation and enhance CAR-T cell anti-tumor therapy.
Endosome-microautophagy targeting chimera (eMIATAC) for targeted proteins degradation and enhance CAR-T cell anti-tumor therapy.
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我们首先筛选出具有高靶向降解效率的 eMIATAC 组分,并探索了 eMIATAC 诱导靶蛋白降解的机制,并通过蛋白印迹和流式细胞术验证了靶蛋白的降解效率。接下来,我们将 eMIATAC 与一些可控元件重组,以验证靶蛋白的可调控降解性能。随后,我们构建了可表达靶向降解 AKT1 的 eMIATAC,并验证了其在体外和体内对 GBM 细胞发展的影响。最后,我们将 eMIATAC 与 CAR 序列连接,构建了 BATF 蛋白水平低的 CAR-T 细胞,并验证了其抗肿瘤疗效的变化。
我们开发了一种基于内体-微自噬-溶酶体通路降解内源性蛋白的系统:内体-微自噬靶向嵌合体(eMIATAC),其依赖 Vps4A 而非溶酶体相关膜蛋白 2A(LAMP2A)与伴侣蛋白 Hsc70 和目的蛋白(POI)结合。该复合物随后由晚期内体运输至溶酶体,在那里发生类似于微自噬的降解。eMIATAC 在降解靶蛋白 EGFP 时表现出准确性、高效性、可逆性和可控性。此外,当在体内和体外靶向内源性蛋白时,eMIATAC 在敲低 POI 方面表现出优异性能。
eMIATAC 不仅能够直接敲低异常蛋白以治疗胶质瘤,还能通过敲低 T 细胞耗竭相关蛋白来增强 CAR-T 细胞疗法对肿瘤的治疗效果。新开发的 eMIATAC 系统有望成为蛋白敲低策略的新型工具。通过实现对内源性蛋白水平的直接调控,eMIATAC 有可能彻底改变癌症和遗传疾病的治疗方式。
Rationale: Since oncogene expression products often exhibit upregulation or abnormally activated activity, developing a technique to regulate abnormal protein levels represent a viable approach for treating tumors and protein abnormality-related diseases. Methods: We first screened out eMIATAC components with high targeted degradation efficiency and explored the mechanism by which eMIATAC induced target protein degradation, and verified the degradation efficiency of the target protein by protein imprinting and flow cytometry.
Next, we recombined eMIATAC with some controllable elements to verify the regulatable degradation performance of the target protein. Subsequently, we constructed eMIATAC that can express targeted degradation of AKT1 and verified its effect on GBM cell development in vitro and in vivo.
Finally, we concatenated eMIATAC with CAR sequences to construct CAR-T cells with low BATF protein levels and verified the changes in their anti-tumor efficacy. Results: we developed a system based on the endosome-microautophagy-lysosome pathway for degrading endogenous proteins: endosome-MicroAutophagy TArgeting Chimera (eMIATAC), dependent on Vps4A instead of lysosomal-associated membrane protein 2A (LAMP2A) to bind to the chaperone Hsc70 and the protein of interest (POI).
The complex was then transported to the lysosome by late endosomes, where degradation occurred similarly to microautophagy. The eMIATACs demonstrated accuracy, efficiency, reversibility, and controllability in degrading the target protein EGFP.
Moreover, eMIATAC exhibited excellent performance in knocking down POI when targeting endogenous proteins in vivo and in vitro. Conclusions: The eMIATACs could not only directly knock down abnormal proteins for glioma treatment but also enhance the therapeutic effect of CAR-T cell therapy for tumors by knocking down T cell exhaustion-related proteins.
The newly developed eMIATAC system holds promise as a novel tool for protein knockdown strategies. By enabling direct control over endogenous protein levels, eMIATAC has the potential to revolutionize treatment for cancer and genetic diseases.
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