肿瘤细胞治疗研究
英文原题:Widespread prevalence of CD19 exon 5-6 skipping in primary pediatric B-Cell acute lymphoblastic leukemia patients.
Widespread prevalence of CD19 exon 5-6 skipping in primary pediatric B-Cell acute lymphoblastic leukemia patients.
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我们首次报道了初诊阶段原发儿童患者中存在缺失外显子 5-6 的异常剪接 CD19 异构体。我们的结果表明,MBNL1 失调导致了这一剪接事件,可能使患者易对 CD19 靶向免疫治疗产生耐药。
B细胞急性淋巴细胞白血病(B-ALL)的特征是异常B细胞淋巴母细胞的恶性增殖。近年来,靶向B细胞表面CD19抗原的CAR-T 细胞疗法作为治疗侵袭性和难治性B-ALL的一种选择,已受到显著关注。然而,治疗压力下异常剪接导致的B细胞表面CD19抗原丢失,被认为是新出现的CAR-T 疗法耐药的主要因素之一。本研究的主要目的是阐明初诊阶段儿童B-ALL患者中异常CD19剪接模式的存在及其特征。
在此,我们采用基于RT-PCR的剪接检测方法,分析了43例分布于不同亚型的原发性儿童B-ALL患者样本中的CD19剪接模式,并探究了异常剪接的潜在机制。
我们观察到,在初诊阶段,约55%的儿科患者中存在缺乏外显子5-6的CD19异构体。我们的计算机分析确定剪接调节因子MBNL1是CD19外显子5-6剪接的潜在调节因子。随后在患者样本中进行的qRT-PCR分析显示,在表现出外显子5-6跳跃的患者样本中,MBNL1过表达。此外,我们的功能研究表明,B-ALL细胞系中MBNL1的缺失诱导外显子5-6跳跃,从而证实了其在CD19剪接调节中的机制作用。
B-cell acute lymphoblastic leukemia (B-ALL) is characterized by the malignant burgeoning of abnormal B-cell lymphoblasts. In recent years, the use of chimeric antigen receptor T-cell (CAR-T) therapy which targets CD19 antigen present on the surface of B-cells, has gained significant attention as a treatment option against aggressive and refractory forms of B-ALL. However, the loss of CD19 antigen on B-cell surface due to aberrant splicing under therapy pressure has been suggested as one of the main factors for the emerging CAR-T therapy resistance. The primary aim of this study was to elucidate the presence and characteristics of aberrant CD19 splicing patterns in pediatric B-ALL patients at the time of initial diagnosis stage. METHODOLOGY: Herein, using RT-PCR based splice assays we have examined CD19 splicing patterns in 43 primary pediatric B-ALL patient samples spread across various subtypes, and investigated underlying mechanisms harboring aberrant splicing.
We observe that CD19 isoform lacking exon 5-6 is present in ~ 55% of pediatric patients at the initial diagnosis stage itself. Our in-silico analysis identified splicing regulator MBNL1 as a potential modulator of CD19 exon 5-6 splicing. Subsequent qRT-PCR analysis in patient samples revealed that MBNL1 is overexpressed in patient samples exhibiting exon 5-6 skipping. Furthermore, our functional studies demonstrate that loss of MBNL1 in B-ALL cell line induces exon 5-6 skipping, thereby confirming its mechanistic role in CD19 splicing regulation.
Taken together, we for the first time report the existence of aberrantly spliced CD19 isoform lacking exon 5-6 in primary pediatric patients at the diagnosis stage. Our results suggest that this MBNL1 dysregulation contributes to this splicing event, potentially predisposing patients to resistance against CD19-directed immunotherapies.
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