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:Characterizing the regulatory Fas (CD95) epitope critical for agonist antibody targeting and CAR-T bystander function in ovarian cancer.
Characterizing the regulatory Fas (CD95) epitope critical for agonist antibody targeting and CAR-T bystander function in ovarian cancer.
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受体聚集是激活TNF超家族死亡受体介导外源性凋亡的关键步骤。尽管激动性抗体治疗临床上未获成功,死亡受体5仍持续受到癌症治疗领域关注。另一种肿瘤富集的死亡受体Fas(CD95)在卵巢癌及其他实体瘤中具有较高功能,但其在癌症免疫治疗中的作用过去未受重视;直到近期发现,Fas在CAR-T 旁观者肿瘤杀伤中至关重要。研究人员结合FasL结合表位及多种临床前Fas激动抗体的结构研究,鉴定出Fas富含半胱氨酸结构域2中一处高度重要的正电荷残基表位簇(PPCR)。在卵巢肿瘤模型中,PPCR结合是实现强效Fas激动信号和CAR-T 旁观者功能的必要条件。FasL或Fas单点突变若干扰PPCR结合,即可抑制肿瘤细胞和T细胞中的凋亡信号。
此外,考虑到自身免疫性淋巴增殖综合征(ALPS)的临床和免疫学特征直接归因于FasL纯合突变,研究还揭示了PPCR界面处FasL/Fas聚集与已报道ALPS突变不同的机制细节。Fas介导的旁观者杀伤对CAR-T 治疗肿瘤的成功至关重要。
本研究结果支持通过死亡受体激动作用设计有效的Fas靶向策略,以改善卵巢癌及其他实体瘤的免疫治疗。
Receptor clustering is the most critical step to activate extrinsic apoptosis by death receptors belonging to the TNF superfamily. Although clinically unsuccessful, using agonist antibodies, the death receptors-5 remains extensively studied from a cancer therapeutics perspective.
However, despite its regulatory role and elevated function in ovarian and other solid tumors, another tumor-enriched death receptor called Fas (CD95) remained undervalued in cancer immunotherapy until recently, when its role in off-target tumor killing by CAR-T therapies was imperative.
By comprehensively analyzing structure studies in the context of the binding epitope of FasL and various preclinical Fas agonist antibodies, we characterize a highly significant patch of positively charged residue epitope (PPCR) in its cysteine-rich domain 2 of Fas. PPCR engagement is indispensable for superior Fas agonist signaling and CAR-T bystander function in ovarian tumor models. A single-point mutation in FasL or Fas that interferes with the PPCR engagement inhibited apoptotic signaling in tumor cells and T cells.
Furthermore, considering that clinical and immunological features of the autoimmune lymphoproliferative syndrome (ALPS) are directly attributed to homozygous mutations in FasL, we reveal differential mechanistic details of FasL/Fas clustering at the PPCR interface compared to described ALPS mutations.
As Fas-mediated bystander killing remains vital to the success of CAR-T therapies in tumors, our findings highlight the therapeutic analytical design for potentially effective Fas-targeting strategies using death agonism to improve cancer immunotherapy in ovarian and other solid tumors.
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