PO.CH01.05 · 化学

橄榄苦苷通过直接抑制 PKA 和 ERK 介导的周转下调黑色素瘤中的 MITF

Oleuropein downregulates MITF via direct PKA inhibition and ERK-mediated turnover in melanoma

海报缩略图:橄榄苦苷通过直接抑制 PKA 和 ERK 介导的周转下调黑色素瘤中的 MITF
编号 3669 展板 28 时间 4/20 02:00–05:00 区域 Section 38 主讲 Ingyu Lee, MS
分会场 Natural Products
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作者与单位 Authors & Affiliations

Ingyu Lee, Jihye Kim, Yi-Xi Gong, Eui Man Jeong

Jeju National University, Jeju, Korea, Republic of

摘要 Abstract

中文摘要
小眼畸形相关转录因子(MITF)在黑色素瘤中充当分子变阻器,调控增殖型和侵袭型表型状态之间的转换。由于 PKA-CREB 轴的组成性激活驱动高水平的 MITF 以维持肿瘤增殖,靶向该通路提供了一种有前景的治疗策略。在此,我们阐明了橄榄苦苷在黑色素瘤和正常黑色素细胞模型中调节 MITF 稳定性和表达的机制。在以 PKA 信号异常为特征的 B16F10 黑色素瘤细胞中,橄榄苦苷直接抑制 PKA 催化活性,导致 CREB 磷酸化减少以及随后 MITF 的转录抑制。此外,橄榄苦苷触发 ERK1/2 激活,加速 MITF 蛋白周转。因此,橄榄苦苷通过上游和下游双重调控机制瓦解了高增殖转录程序。至关重要的是,橄榄苦苷降低了正常人黑色素细胞中的基础 MITF 水平,并有效钝化了由 alpha-MSH 或福斯高林诱导的 MITF 峰值。这表明橄榄苦苷作为 PKA-CREB 轴的强效抑制剂,可在基础和过度激活两种条件下防止病理性信号放大。总之,通过靶向 PKA 催化活性并促进 ERK 依赖性降解,橄榄苦苷有效减弱了异常的 MITF 表达。这些发现将橄榄苦苷定位为黑色素瘤表型可塑性的一种有前景的调节剂,具有潜在的治疗应用价值。
查看英文原文 English abstract
The Microphthalmia-associated Transcription Factor (MITF) acts as a molecular rheostat in melanoma, governing the switch between proliferative and invasive phenotypic states. Since constitutive activation of the PKA-CREB axis drives high MITF levels to sustain tumor proliferation, targeting this pathway offers a promising therapeutic strategy. Here, we elucidate the mechanism by which oleuropein modulates MITF stability and expression in melanoma and normal melanocyte models. In B16F10 melanoma cells characterized by aberrant PKA signaling, oleuropein directly inhibited PKA catalytic activity, leading to reduced CREB phosphorylation and subsequent transcriptional suppression of MITF. Furthermore, oleuropein triggered ERK1/2 activation, accelerating MITF protein turnover. Consequently, oleuropein dismantled the hyper-proliferative transcriptional program through dual upstream and downstream regulatory mechanisms. Crucially, oleuropein reduced basal MITF levels in normal human melanocytes and effectively blunted MITF spikes induced by alpha-MSH or forskolin. This suggests that oleuropein functions as a potent inhibitor of the PKA-CREB axis, preventing pathological signaling amplification under both basal and hyperactivated conditions. In conclusion, by targeting PKA catalytic activity and promoting ERK-dependent degradation, oleuropein effectively attenuates aberrant MITF expression. These findings position oleuropein as a promising modulator of melanoma phenotypic plasticity with potential therapeutic applications.
利益披露 Disclosure
I. Lee, None.. J. Kim, None.. Y. Gong, None.. E. Jeong, None.

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