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人类 B 细胞谱系恶性肿瘤中 BAFF 受体失调的转录和转录后机制。

Transcriptional and post-transcriptional mechanisms of BAFF-receptor dysregulation in human B lineage malignancies.

机构信息

Department of Immunology, Mayo Clinic College of Medicine, Rochester, MN, USA.

出版信息

Cell Cycle. 2010 Dec 15;9(24):4884-92. doi: 10.4161/cc.9.24.14156.

Abstract

Together, circulating BAFF and dominant receptor BAFF-R homeostatically regulate the humoral immune system. Consistently aberrant BAFF-R expression in leukemic cells reveals an intimate connection of these cells' malignant physiology to the BAFF/BAFF-R axis and also provides an additional survival mechanism to the expressing cells. In this study, we used primary cells and cell lines to interrogate the mechanisms underlying aberrant BAFF-R expression in precursor B acute lymphoblastic leukemia (precursor B-ALL) and mature B chronic lymphocytic leukemia (CLL). Here we demonstrate the aberrant expression of BAFF-R in precursor B-ALL cell lines and reveal that these cells acquire BAFF-R expression through premature transcriptional activation of the BAFF-R promoter in coordination with regulatory transcription factor c-Rel. Investigations using primary CLL cells provide a crucial counterpoint through their paucity of BAFF-R relative to their benign mature B cell counterparts, which we establish as functionally significant in its depletion of the CLL cells' BAFF-binding capacity. Furthermore, BAFF-R downregulation in CLL patients is revealed here to be restricted to the malignant compartment and mediated post-transcriptionally in order to compensate for the consistently unchanged levels of transcription factor c-Rel and BAFF-R mRNA. Finally, we present evidence that CLL cells retain endogenous mechanisms of BAFF-R regulatory control despite active receptor dysregulation.

摘要

循环 BAFF 和优势受体 BAFF-R 共同调节体液免疫系统的稳态。白血病细胞中异常表达的 BAFF-R 揭示了这些细胞的恶性生理学与 BAFF/BAFF-R 轴的密切联系,也为表达细胞提供了另一种存活机制。在这项研究中,我们使用原代细胞和细胞系来探究前体 B 急性淋巴细胞白血病 (precursor B-ALL) 和成熟 B 慢性淋巴细胞白血病 (CLL) 中异常 BAFF-R 表达的机制。在这里,我们证明了 BAFF-R 在 precursor B-ALL 细胞系中的异常表达,并揭示这些细胞通过与调节转录因子 c-Rel 协调的 BAFF-R 启动子的过早转录激活获得 BAFF-R 表达。对原发性 CLL 细胞的研究通过其与良性成熟 B 细胞对应物相比相对缺乏 BAFF-R 提供了一个重要的对比,我们确定其在耗尽 CLL 细胞的 BAFF 结合能力方面具有功能意义。此外,我们在这里揭示 CLL 患者的 BAFF-R 下调仅限于恶性细胞区室,并通过转录后机制进行调节,以补偿转录因子 c-Rel 和 BAFF-R mRNA 的水平始终不变。最后,我们提供的证据表明,尽管受体失调活跃,CLL 细胞仍保留 BAFF-R 调节控制的内源性机制。

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