Department of Medical Oncology, Dana-Farber Cancer Institute, Harvard Medical School, Boston, Massachusetts, United States of America.
PLoS One. 2011;6(6):e20787. doi: 10.1371/journal.pone.0020787. Epub 2011 Jun 8.
Despite exhibiting oncogenic events, patient's leukemia cells are responsive and dependent on signals from their malignant bone marrow (BM) microenvironment, which modulate their survival, cell cycle progression, trafficking and resistance to chemotherapy. Identification of the signaling pathways mediating this leukemia/microenvironment interplay is critical for the development of novel molecular targeted therapies.We observed that primary leukemia B-cell precursors aberrantly express receptors of the BAFF-system, BAFF-R, BCMA, and TACI. These receptors are functional as their ligation triggers activation of NF-κB, MAPK/JNK, and Akt signaling. Leukemia cells express surface BAFF and APRIL ligands, and soluble BAFF is significantly higher in leukemia patients in comparison to age-matched controls. Interestingly, leukemia cells also express surface APRIL, which seems to be encoded by APRIL-δ, a novel isoform that lacks the furin convertase domain. Importantly, we observed BM microenvironmental cells express the ligands BAFF and APRIL, including surface and secreted BAFF by BM endothelial cells. Functional studies showed that signals through BAFF-system receptors impact the survival and basal proliferation of leukemia B-cell precursors, and support the involvement of both homotypic and heterotypic mechanisms.This study shows an unforeseen role for the BAFF-system in the biology of precursor B-cell leukemia, and suggests that the target disruption of BAFF signals may constitute a valid strategy for the treatment of this cancer.
尽管表现出致癌事件,但患者的白血病细胞对其恶性骨髓(BM)微环境的信号仍然敏感且依赖,这些信号调节其存活、细胞周期进程、迁移和对化疗的耐药性。鉴定介导这种白血病/微环境相互作用的信号通路对于开发新型分子靶向治疗至关重要。
我们观察到,原发性白血病 B 细胞前体异常表达 BAFF 系统的受体,包括 BAFF-R、BCMA 和 TACI。这些受体具有功能,因为它们的配体结合会触发 NF-κB、MAPK/JNK 和 Akt 信号的激活。白血病细胞表达表面 BAFF 和 APRIL 配体,并且与年龄匹配的对照相比,白血病患者的可溶性 BAFF 明显更高。有趣的是,白血病细胞还表达表面 APRIL,它似乎由 APRIL-δ 编码,这是一种缺乏弗林蛋白酶转化酶结构域的新型同工型。重要的是,我们观察到 BM 微环境细胞表达 BAFF 和 APRIL 配体,包括 BM 内皮细胞的表面和分泌型 BAFF。功能研究表明,BAFF 系统受体的信号影响白血病 B 细胞前体的存活和基础增殖,并支持同型和异型机制的参与。
这项研究显示了 BAFF 系统在 B 细胞前体白血病生物学中的一个意外作用,并表明靶向破坏 BAFF 信号可能是治疗这种癌症的有效策略。