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ZEB1介导p300缺陷型结直肠癌中的耐药性和上皮-间质转化。

ZEB1 Mediates Drug Resistance and EMT in p300-Deficient CRC.

作者信息

Lazarova Darina, Bordonaro Michael

机构信息

Department of Basic Sciences, Geisinger Commonwealth School of Medicine, 525 Pine Street, Scranton, PA 18509, USA.

出版信息

J Cancer. 2017 May 12;8(8):1453-1459. doi: 10.7150/jca.18762. eCollection 2017.

Abstract

We discuss the hypothesis that ZEB1-Wnt-p300 signaling integrates epithelial to mesenchymal transition (EMT) and resistance to histone deacetylase inhibitors (HDACis) in colorectal cancer (CRC) cells. The HDACi butyrate, derived from dietary fiber, has been linked to CRC prevention, and other HDACis have been proposed as therapeutic agents against CRC. We have previously discussed that resistance to butyrate likely contributes to colonic carcinogenesis, and we have demonstrated that butyrate resistance leads to cross-resistance to cancer therapeutic HDACis. Deregulated Wnt signaling is the major initiating event in most CRC cases. One mechanism whereby butyrate and other HDACis exert their anti-CRC effects is via Wnt signaling hyperactivation, which promotes CRC cell apoptosis. The histone acetylases (HATs) CBP and p300 are mediators of Wnt transcriptional activity, and play divergent roles in the downstream consequences of Wnt signaling. CBP-mediated Wnt signaling is associated with cell proliferation and stem cell maintenance; whereas, p300-mediated Wnt activity is associated with differentiation. We have found that CBP and p300 differentially affect the ability of butyrate to influence Wnt signaling, apoptosis, and proliferation. 1 is a Wnt signaling-targeted gene, whose product is a transcription factor expressed at the invasive front of carcinomas where it promotes malignant progression and EMT. ZEB1 is typically a transcriptional repressor; however, when associated with p300, ZEB1 enhances transcription. These changes in ZEB1 activity likely affect the cancer cell phenotype. ZEB1 has been shown to promote resistance to chemotherapeutic agents, and expression of ZEB1 is upregulated in butyrate-resistant CRC cells that lack p300 expression. Since the expression of ZEB1 correlates with poor outcomes in cancer, ZEB represents a relevant therapeutic target. Here we propose that targeting the signaling network established by ZEB1, Wnt signaling, and p300 signaling can reverse HDACi resistance and inhibit EMT.

摘要

我们探讨了一种假说,即ZEB1-Wnt-p300信号传导整合了结肠直肠癌(CRC)细胞中的上皮-间质转化(EMT)和对组蛋白去乙酰化酶抑制剂(HDACis)的抗性。源自膳食纤维的HDACi丁酸盐与CRC预防有关,并且其他HDACis已被提议作为抗CRC的治疗剂。我们之前曾讨论过,对丁酸盐的抗性可能促成结肠癌发生,并且我们已经证明丁酸盐抗性会导致对癌症治疗性HDACis的交叉抗性。失调的Wnt信号传导是大多数CRC病例中的主要起始事件。丁酸盐和其他HDACis发挥其抗CRC作用的一种机制是通过Wnt信号传导的过度激活,这促进CRC细胞凋亡。组蛋白乙酰转移酶(HATs)CBP和p300是Wnt转录活性的介质,并且在Wnt信号传导的下游后果中发挥不同作用。CBP介导的Wnt信号传导与细胞增殖和干细胞维持相关;而p300介导的Wnt活性与分化相关。我们发现CBP和p300对丁酸盐影响Wnt信号传导、细胞凋亡和增殖的能力有不同影响。ZEB1是一个Wnt信号传导靶向基因,其产物是一种转录因子,在癌的侵袭前沿表达,在那里它促进恶性进展和EMT。ZEB1通常是一种转录抑制因子;然而,当与p300相关时,ZEB1会增强转录。ZEB1活性的这些变化可能会影响癌细胞表型。ZEB1已被证明可促进对化疗药物的抗性,并且在缺乏p300表达的丁酸盐抗性CRC细胞中ZEB1的表达上调

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