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Androgen Receptor Survival Signaling Is Blocked by Anti-β2-microglobulin Monoclonal Antibody via a MAPK/Lipogenic Pathway in Human Prostate Cancer Cells*

机译:抗β2-微球蛋白单克隆抗体通过MAPK /脂肪生成途径在人前列腺癌细胞中阻断雄激素受体的生存信号*

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摘要

A new cis-acting element, sterol regulatory element-binding protein-1 (SREBP-1) binding site, within the 5′-flanking human androgen receptor (AR) promoter region and its binding transcription factor, SREBP-1, was identified to regulate AR transcription in AR-positive human prostate cancer cells. We further characterized the molecular mechanism by which a novel anti-β2-microglobulin monoclonal antibody (β2M mAb), shown to induce massive cell death in a number of human and mouse cancer cell lines, interrupted multiple cell signaling pathways in human prostate cancer cells. β2M mAb decreased AR expression through inactivation of MAPK and SREBP-1. By inactivation of MAPK, β2M mAb decreased prostate cancer cell proliferation and survival. By inhibition of SREBP-1, β2M mAb reduced fatty acid and lipid levels, an integral component of cell membrane, cell signaling mediators, and energy metabolism. These results provide for the first time a molecular link between the β2M intracellular signaling axis mediated by MAPK and SREBP-1 and involving lipid signaling, which collectively regulates AR expression and function. Antagonizing β2M by β2M mAb may be an effective therapeutic approach simultaneously targeting multiple downstream signaling pathways converging with MAPK, SREBP-1, and AR, important for controlling prostate cancer cell growth, survival, and progression.
机译:在5'侧翼人类雄激素受体(AR)启动子区域及其结合转录因子SREBP-1中发现了一个新的顺式作用元件,固醇调节元件结合蛋白1(SREBP-1)结合位点,调节AR阳性人类前列腺癌细胞中的AR转录。我们进一步表征了新的抗β2-微球蛋白单克隆抗体(β2MmAb)的分子机制,该抗体在多种人类和小鼠癌细胞系中诱导大量细胞死亡,从而中断了人类前列腺癌细胞中的多个细胞信号通路。 β2MmAb通过失活MAPK和SREBP-1降低AR表达。通过使MAPK失活,β2MmAb降低了前列腺癌细胞的增殖和存活率。通过抑制SREBP-1,β2MmAb降低了脂肪酸和脂质水平,这是细胞膜,细胞信号传导介质和能量代谢的重要组成部分。这些结果首次提供了由MAPK和SREBP-1介导且涉及脂质信号传导的β2M细胞内信号传导轴之间的分子连接,该分子连接共同调节AR的表达和功能。用β2MmAb拮抗β2M可能是一种有效的治疗方法,同时靶向与MAPK,SREBP-1和AR融合的多个下游信号通路,这对于控制前列腺癌细胞的生长,存活和进展很重要。

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