Hematology and Medical Oncology.
Department of Pharmacological Sciences.
Blood. 2018 May 17;131(20):2247-2255. doi: 10.1182/blood-2018-02-832535. Epub 2018 Apr 3.
Mantle cell lymphoma (MCL) is characterized by increased B-cell receptor (BCR) signaling, and BTK inhibition is an effective therapeutic intervention in MCL patients. The mechanisms leading to increased BCR signaling in MCL are poorly understood, as mutations in upstream regulators of BCR signaling such as CD79A, commonly observed in other lymphomas, are rare in MCL. The transcription factor SOX11 is overexpressed in the majority (78% to 93%) of MCL patients and is considered an MCL-specific oncogene. So far, attempts to understand SOX11 function in vivo have been hampered by the lack of appropriate animal models, because germline deletion of SOX11 is embryonically lethal. We have developed a transgenic mouse model (Eμ-SOX11-EGFP) in the C57BL/6 background expressing murine SOX11 and EGFP under the control of a B-cell-specific IgH-Eμ enhancer. The overexpression of SOX11 exclusively in B cells exhibits oligoclonal B-cell hyperplasia in the spleen, bone marrow, and peripheral blood, with an immunophenotype (CD5CD19CD23) identical to human MCL. Furthermore, phosphocytometric time-of-flight analysis of the splenocytes from these mice shows hyperactivation of pBTK and other molecules in the BCR signaling pathway, and serial bone marrow transplant from transgenic donors produces lethality with decreasing latency. We report here that overexpression of SOX11 in B cells promotes BCR signaling and a disease phenotype that mimics human MCL.
套细胞淋巴瘤(MCL)的特征是 B 细胞受体(BCR)信号增加,而 BTK 抑制是 MCL 患者的有效治疗干预措施。导致 MCL 中 BCR 信号增加的机制知之甚少,因为在上游 BCR 信号调节剂(如 CD79A)中观察到的突变在其他淋巴瘤中很常见,但在 MCL 中却很少见。转录因子 SOX11 在大多数(78%至 93%)MCL 患者中过度表达,被认为是 MCL 特异性癌基因。到目前为止,由于缺乏适当的动物模型,SOX11 功能的体内理解尝试一直受到阻碍,因为 SOX11 的种系缺失在胚胎期是致命的。我们已经在 C57BL/6 背景中开发了一种转基因小鼠模型(Eμ-SOX11-EGFP),该模型在 B 细胞特异性 IgH-Eμ增强子的控制下表达鼠 SOX11 和 EGFP。SOX11 仅在 B 细胞中的过表达在脾脏、骨髓和外周血中表现出寡克隆 B 细胞增生,其免疫表型(CD5CD19CD23)与人类 MCL 相同。此外,对来自这些小鼠的脾细胞进行磷酸化细胞计时飞行分析表明,BCR 信号通路中的 pBTK 和其他分子过度激活,并且从转基因供体进行连续骨髓移植会导致潜伏期缩短的致死性。我们在这里报告,SOX11 在 B 细胞中的过表达促进了 BCR 信号和模拟人类 MCL 的疾病表型。