首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Suppression of B-cell lymphomagenesis by the BH3-only proteins Bmf and Bad.
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Suppression of B-cell lymphomagenesis by the BH3-only proteins Bmf and Bad.

机译:仅BH3蛋白Bmf和Bad抑制B细胞淋巴瘤的形成。

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摘要

Oncogenic c-Myc is known to balance excessive proliferation by apoptosis that can be triggered by p53-dependent and p53-independent signaling networks. Here, we provide evidence that the BH3-only proapoptotic Bcl-2 family members Bcl-2 modifying factor (Bmf) and Bcl-2 antagonist of cell death (Bad) are potent antagonists of c-Myc-driven B-cell lymphomagenesis. Tumor formation was preceded by the accumulation of preneoplastic pre-B and immature immunoglobulin M-positive (IgM(+)) B cells in hematopoietic organs of Emu-myc/bmf(-/-) mice, whereas Emu-myc/bad(-/-) mice showed an increase of pre-B cells limited to the spleen. Although the loss of Bad had no impact on the tumor immunophenotype, Bmf deficiency favored the development of IgM(+) B cell over pre-B cell tumors. This phenomenon was caused by a strong protection of immature IgM(+) B cells from oncogene-driven apoptosis caused by loss of bmf and c-Myc-induced repression of Bmf expression in premalignant pre-B cells. Steady-state levels of B-cell apoptosis also were reduced in the absence of Bad, in support of its role as a sentinel for trophic factor-deprivation. Loss of Bmf reduced the pressure to inactivate p53, whereas Bad deficiency did not, identifying Bmf as a novel component of the p53-independent tumor suppressor pathway triggered by c-Myc.
机译:已知致癌的c-Myc通过凋亡来平衡过度增殖,而凋亡可能由p53依赖和p53独立的信号网络触发。在这里,我们提供的证据表明,仅BH3促凋亡的Bcl-2家族成员Bcl-2修饰因子(Bmf)和细胞死亡的Bcl-2拮抗剂(Bad)是c-Myc驱动的B细胞淋巴瘤形成的有效拮抗剂。肿瘤形成之前,在Emu-myc / bmf(-/-)小鼠的造血器官中积累了肿瘤前的pre-B和未成熟的免疫球蛋白M阳性(IgM(+))B细胞,而Emu-myc / bad(- /-)小鼠显示出限于脾脏的前B细胞增加。尽管Bad的丧失对肿瘤免疫表型没有影响,但Bmf缺乏症比B前细胞瘤更有利于IgM(+)B细胞的发展。此现象是由于未成熟的IgM(+)B细胞免受癌基因驱动的凋亡所引起的,该凋亡由bmf的丧失和c-Myc诱导的Bmf在癌前B细胞中的表达抑制所致。在缺乏Bad的情况下,B细胞凋亡的稳态水平也降低了,以支持其作为营养因子剥夺的前哨作用。 Bmf的损失降低了p53失活的压力,而Bad Bad的失活却没有,这表明Bmf是c-Myc触发的p53依赖性肿瘤抑制途径的新组成部分。

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