决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:Alternative splicing of its 5'-UTR limits CD20 mRNA translation and enables resistance to CD20-directed immunotherapies.
未标注:CD19 和 CD22 编码外显子的异常跳跃削弱了 B 细胞恶性肿瘤对免疫治疗的应答。
未标注摘要:异常跳读 CD19 和 CD22 的编码外显子会削弱 B 细胞恶性肿瘤对免疫疗法的应答。本研究显示,编码人 CD20 的 MS4A1 基因也会产生多种 5' 非翻译区(5'-UTR)不同的 mRNA 异构体。正常 B 细胞分化的不同阶段以及 B 淋巴系统恶性肿瘤的 RNA-seq 中均可检测到 4 种变体(V1–V4),其中 V1 和 V3 丰度远高于其他变体。在 B 细胞活化和 Epstein-Barr 病毒感染期间,剪接从 V1 转向 V3,同时 CD20 阳性率上升。同样,在弥漫性大 B 细胞淋巴瘤中,只有 V3(而非 V1)与 CD20 蛋白水平相关,提示 V1 可能无法有效翻译。研究证实,较长的 V1 异构体含有上游开放阅读框(uORF)和茎环结构,二者协同抑制多核糖体募集。通过使用剪接转换型 Morpholino 寡核苷酸调节 CD20 异构体,研究人员提高了多种 B 细胞系的 CD20 表达和抗 CD20 抗体 rituximab 介导的细胞毒性。此外,在 CD20 敲除细胞中重新导入 V3 mRNA 可恢复 CD20 阳性,而导入 V1 mRNA 后检测不到 CD20 蛋白。令人意外的是,体外 CD20 靶向 CAR-T 细胞能够杀伤表达 V3 或 V1 的细胞,但双特异性 T 细胞衔接器 mosunetuzumab 仅对表达 V3 的细胞有效。为确定 CD20 剪接是否参与免疫治疗耐药,研究人员对 mosunetuzumab 治疗后滤泡性淋巴瘤复发的 4 例患者开展 RNA-seq,发现其中 2 例 CD20 下调伴随 V3 向 V1 转换。由此可见,剪接介导的表位丢失机制也适用于 CD20 靶向免疫疗法。要点:正常及恶性人 B 细胞中的 CD20 mRNA 可经可变剪接形成 4 种 5'-UTR 异构体,其中一些无法有效翻译。无法翻译和可翻译异构体之间的比例会调节 CD20 蛋白水平及 CD20 靶向免疫疗法的应答。创新点说明:研究发现,正常和恶性 B 细胞中的 CD20 mRNA 可经可变剪接产生 4 种不同的 5'-UTR,包括较长且无法有效翻译的 V1 变体。以 V1 为主表达的细胞仍对靶向 CD20 的 CAR-T 细胞敏感,但对抗 CD3/CD20 双特异性抗体 mosunetuzumab 耐药;在 mosunetuzumab 治疗后 CD20 阴性的滤泡性淋巴瘤复发中,也观察到 V1 占比增加。
UNLABELLED: Aberrant skipping of coding exons in CD19 and CD22 compromises responses to immunotherapy for B-cell malignancies. Here, we show that the MS4A1 gene encoding human CD20 also produces several mRNA isoforms with distinct 5' untranslated regions (5'-UTR). Four variants (V1-4) were detectable by RNA-seq in distinct stages of normal B-cell differentiation and B-lymphoid malignancies, with V1 and V3 being the most abundant by far. During B-cell activation and Epstein-Barr virus infection, redirection of splicing from V1 to V3 coincided with increased CD20 positivity. Similarly, in diffuse large B-cell lymphoma only V3, but not V1, correlated with CD20 protein levels, suggesting that V1 might be translation-deficient. Indeed, the longer V1 isoform was found to contain upstream open reading frames (uORFs) and a stem-loop structure, which cooperatively inhibited polysome recruitment. By modulating CD20 isoforms with splice-switching Morpholino oligomers, we enhanced CD20 expression and anti-CD20 antibody rituximab-mediated cytotoxicity in a panel of B-cell lines. Furthermore, reconstitution of CD20-knockout cells with V3 mRNA led to the recovery of CD20 positivity, while V1-reconstituted cells had undetectable levels of CD20 protein. Surprisingly, in vitro CD20-directed CAR T cells were able to kill both V3- and V1-expressing cells, but the bispecific T cell engager mosunetuzumab was only effective against V3-expressing cells. To determine whether CD20 splicing is involved in immunotherapy resistance, we performed RNA-seq on four post-mosunetuzumab follicular lymphoma relapses and discovered that in two of them downregulation of CD20 was accompanied by the V3-to-V1 shift. Thus, splicing-mediated mechanisms of epitope loss extend to CD20-directed immunotherapies. KEY POINTS: In normal & malignant human B cells, CD20 mRNA is alternatively spliced into four 5'-UTR isoforms, some of which are translation-deficient.The balance between translation-deficient and -competent isoforms modulates CD20 protein levels & responses to CD20-directed immunotherapies. EXPLANATION OF NOVELTY: We discovered that in normal and malignant B-cells, CD20 mRNA is alternatively spliced to generate four distinct 5'-UTRs, including the longer translation-deficient V1 variant. Cells predominantly expressing V1 were still sensitive to CD20-targeting chimeric antigen receptor T-cells. However, they were resistant to the bispecific anti-CD3/CD20 antibody mosunetuzumab, and the shift to V1 were observed in CD20-negative post-mosunetuzumab relapses of follicular lymphoma.
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