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非酶 RAS 效应物 RASSF7 抑制致癌性 c-Myc 功能。

The non-enzymatic RAS effector RASSF7 inhibits oncogenic c-Myc function.

机构信息

From the National Cancer Tissue Biobank, Laboratory of Molecular Cell Biology and.

Protein Bioinformatics Laboratory, Bhupat and Jyoti Mehta School of Biosciences, Department of Biotechnology, Indian Institute of Technology-Madras, Chennai 600036, India and.

出版信息

J Biol Chem. 2018 Oct 5;293(40):15691-15705. doi: 10.1074/jbc.RA118.004452. Epub 2018 Aug 23.

Abstract

is a proto-oncogene controlling expression of multiple genes involved in cell growth and differentiation. Although the functional role of c-Myc as a transcriptional regulator has been intensively studied, targeting this protein in cancer remains a challenge. Here, we report a trimodal regulation of c-Myc function by the Ras effector, Ras-association domain family member 7 (RASSF7), a nonenzymatic protein modulating protein-protein interactions to regulate cell proliferation. Using HEK293T and HeLa cell lines, we provide evidence that RASSF7 destabilizes the c-Myc protein by promoting Cullin4B-mediated polyubiquitination and degradation. Furthermore, RASSF7 competed with MYC-associated factor X (MAX) in the formation of a heterodimeric complex with c-Myc and attenuated its occupancy on target gene promoters to regulate transcription. Consequently, RASSF7 inhibited c-Myc-mediated oncogenic transformation, and an inverse correlation between the expression levels of the and genes was evident in human cancers. Furthermore, we found that RASSF7 interacts with c-Myc via its RA and leucine zipper (LZ) domains and LZ domain peptide is sufficient to inhibit c-Myc function, suggesting that this peptide might be used to target oncogenic c-Myc. These results unveil that RASSF7 and c-Myc are functionally linked in the control of tumorigenesis and open up potential therapeutic avenues for targeting the "undruggable" c-Myc protein in a subset of human cancers.

摘要

RASSF7 是 Ras 效应物,通过调节蛋白-蛋白相互作用来控制细胞增殖,从而对 c-Myc 功能进行三模态调节。我们使用 HEK293T 和 HeLa 细胞系,提供了证据表明 RASSF7 通过促进 Cullin4B 介导的多泛素化和降解来使 c-Myc 蛋白不稳定。此外,RASSF7 在与 c-Myc 形成异二聚体复合物方面与 MYC 相关因子 X(MAX)竞争,并减弱其在靶基因启动子上的占据以调节转录。因此,RASSF7 抑制了 c-Myc 介导的致癌转化,并且在人类癌症中明显存在 和 基因表达水平之间的反比相关性。此外,我们发现 RASSF7 通过其 RA 和亮氨酸拉链(LZ)结构域与 c-Myc 相互作用,并且 LZ 结构域肽足以抑制 c-Myc 功能,这表明该肽可能用于靶向致癌 c-Myc。这些结果表明 RASSF7 和 c-Myc 在控制肿瘤发生方面具有功能联系,并为靶向人类癌症中一部分“不可成药”的 c-Myc 蛋白开辟了潜在的治疗途径。

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