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.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Structure-guided engineering of CCL27 enhances natural ligand CAR T-cells against CCR10 for multiple myeloma.
Structure-guided engineering of CCL27 enhances natural ligand CAR T-cells against CCR10 for multiple myeloma.
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尽管BCMA CAR-T 疗法取得成功,许多多发性骨髓瘤患者仍会复发,需要其他治疗选择。我们团队此前发现趋化因子受体CCR10可能是满足这一需求的替代靶点。
在此,我们确认原发性骨髓瘤肿瘤表达CCR10,并尝试以其天然配体CCL27作为CAR结合元件,开发靶向CCR10的CAR-T 细胞。但基于天然CCL27序列构建的CAR疗效不佳。
因此,我们结合计算建模和结构指导的工程化设计,对CCL27-CCR10界面进行理性突变,利用CCR10上的疏水口袋。由此筛选出带有额外N端芳香族氨基酸的CCL27突变体,可显著提高CCL27 CAR-T 疗效,使其接近当前抗BCMA CAR-T 疗法的水平。
我们验证了CCL27-CCR10界面的关键氨基酸接触位点,这些位点有助于提高CAR结合亲合力;预测该效果与范德华相互作用增强有关。
最后,我们发现CCL27突变体对造血系统无毒性。本研究展示了天然配体CAR-T 疗法在野生型序列之外进行工程化改造的潜力,并凸显工程化CCL27突变体CAR-T 的转化潜力。
Despite the success of BCMA CAR-Ts, many multiple myeloma patients relapse and require additional therapeutic options.
Our group previously identified the chemokine receptor CCR10 as a potential alternate target to address this need.
Here, we validated CCR10 expression on primary myeloma tumors and sought to develop CAR T-cells against CCR10, utilizing its natural ligand CCL27 as a CAR binding element.
However, CARs based on the native CCL27 sequence were ineffective.
We thus utilized computational modeling and structure-guided engineering to inform rational mutations along the CCL27-CCR10 interface, exploiting a hydrophobic pocket on CCR10. This effort identified CCL27 mutants with an additional N-terminal aromatic amino acid that dramatically improved the efficacy of CCL27-based CAR-Ts to near that of current anti-BCMA CAR-Ts.
We validated key amino acid contacts at the CCL27-CCR10 interface, which contribute to increased CAR binding avidity, predicted to be influenced by increased Van der Waals interactions. Lastly, we found that the CCL27 mutants have no toxicity in the hematopoietic compartment. This work illustrates the potential of engineering natural ligand CAR-Ts beyond their wild-type sequences and underscores the translational potential of engineered CCL27 mutant CAR-Ts.
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