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同源结构域驱动的致癌性转向γδTCR 表型在 T 细胞急性淋巴细胞白血病中的作用

英文原题:Homeodomain-driven oncogenic diversion to a γδTCR phenotype in T-cell acute lymphoblastic leukemia.

PubMed 2026/06/04(内容时间) Blood Q1 · IF 23.9(JCR 2025)

研究概要

在我们中心进行表型分析的1233例T-ALL中,33%(n = 403)表达TCR,其中47%(n = 191;113例成人,78例儿童)为γδTCR阳性(γδTCR+)。

中文摘要

T细胞急性淋巴细胞白血病(T-ALL)源于分化受阻的胸腺细胞的恶性转化。γδ T细胞受体(γδTCR)在T-ALL中的表面表达出乎意料地常见,这使人们对γδ谱系对白血病发生的易感性产生疑问。在我们中心进行表型分析的1233例T-ALL中,33%(n = 403)表达TCR,其中47%(n = 191;113例成人,78例儿童)为γδTCR阳性(γδTCR+)。通过综合分析,我们得以描绘出2种不同的γδTCR+ T-ALL亚型,其具有不同的生理对应细胞。第一种(占75%的病例)以含同源结构域癌基因的异位表达(HD+)、Vβ-Jβ重排以及类似于皮质胸腺细胞的表型(包括表面pre-TCRα链)和转录谱为特征,因此被命名为皮质样γδ T-ALL。用HOXA9或TLX3(HD+癌基因)转导小鼠T细胞祖细胞和人CD34+细胞,可导致向表达γδTCR的胸腺细胞分化偏移。第二种亚型(25%)表现出类似于γδ胸腺细胞的表型和转录谱,被命名为真正的γδ T-ALL。这些发现在COGAALL0434队列中得到验证。尽管真正的γδ T-ALL富集了早期T细胞祖细胞(ETP)样和KMT2A重排病例,但它们大多不符合ETP-ALL的表型定义。与ETP样亚型相似,真正的γδ T-ALL与对化疗的初始反应差相关,但对BCL2抑制剂venetoclax敏感。我们的结果揭示了T-ALL中γδTCR表达背后的发育异质性,并提示该亚型的过度代表反映了HD+癌基因对αβ谱系定向的抑制。这些试验已在www.clinicaltrials.gov注册,注册号为NCT00222027(GRAALL2003)、NCT00327678(GRAALL2005)、NCT03709719(GRAALL2014)和NCT00408005(儿童肿瘤组AALL0434试验)。

展开英文摘要原文

T-cell acute lymphoblastic leukemia (T-ALL) results from the malignant transformation of thymocytes blocked in their differentiation. Surface expression of the γδ T-cell receptor (γδTCR) is surprisingly frequent in T-ALLs, questioning the susceptibility of the γδ-lineage to leukemogenesis. Among 1233 T-ALLs phenotyped in our center, 33% (n = 403) expressed a TCR, of which 47% (n = 191; 113 adults, 78 children) were positive for γδTCR (γδTCR+). Using a comprehensive analysis, we were able to delineate 2 distinct γδTCR+ T-ALL subtypes, with distinct physiological counterparts. The first (75% of cases) was characterized by ectopic expression of homeodomain-containing oncogenes (HD+), Vβ-Jβ rearrangements, and phenotypic (including surface pre-TCRα chain) and transcriptional profiles reminiscent of cortical thymocytes and was, therefore, termed cortical-like γδ T-ALLs. Transduction of murine T-cell progenitors and human CD34+ cells with HOXA9 or TLX3 (HD+ oncogenes) led to a differentiation bias toward γδTCR-expressing thymocytes. The second subtype (25%) exhibited phenotypic and transcriptional profiles reminiscent of γδ thymocytes, and was termed bona fide γδ T-ALLs. These findings were validated in the COGAALL0434 cohort. Although bona fide γδ T-ALLs were enriched for early T-cell progenitor (ETP)-like and KMT2A-rearranged cases, they mostly eluded the phenotypic definition of ETP-ALLs. Similar to the ETP-like subtype, bona fide γδ T-ALLs were associated with a poor initial response to chemotherapy but were sensitive to the BCL2 inhibitor venetoclax. Our results reveal developmental heterogeneity behind γδTCR expression in T-ALLs and suggest that overrepresentation of this subtype reflects αβ-lineage commitment repression by HD+ oncogenes. These trials were registered at www.clinicaltrials.gov as NCT00222027 (GRAALL2003), NCT00327678 (GRAALL2005), NCT03709719 (GRAALL2014), and NCT00408005 (Children's Oncology Group AALL0434 trial).

论文信息

作者
Pinton A、Courtois L、Delafoy M、Bonnet M、Cieslak A、Lhermitte L、Simonin M、Dourthe ME
单位
Institut Necker Enfants Malades, INSERM U1151, Centre National de la Recherche Scientifique Unité Mixte de Recherche 8253, Université Paris Cité, Paris, France.France
期刊
Blood2026 Jun 4
原文标识
PubMed 41592282 · DOI 10.1182/blood.2025030626