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Induction of nuclear protein-1 by thyroid hormone enhances platelet-derived growth factor A mediated angiogenesis in liver cancer

机译:甲状腺激素诱导核蛋白-1增强肝癌中血小板衍生的生长因子A介导的血管生成

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Background & Aims : Hepatocellular carcinoma (HCC) is among the leading causes of cancer deaths worldwide. Many studies indicate that disruption of cellular thyroid hormone signaling promotes HCC progression. However, the mechanisms underlying the regulation of genes downstream of thyroid hormone actions in HCC have remained elusive. In the current study, we identified NUPR1 (nuclear protein-1), a stress-induced protein that overexpresses in various neoplasia, is upregulated by triiodothyronine/thyroid hormone receptor (Tsub3/sub/TR) signaling and aimed to elucidate its role in angiogenesis in cancer progression. Methods : Quantitative reverse transcription-PCR, luciferase promoter and chromatin immunoprecipitation assays were performed to identify the NUPR1 regulatory mechanism by Tsub3/sub/TR. In vitro and In vivo vascular formations were performed to detect the angiogenic function of NUPR1. Human angiogenesis arrays were performed to identify the downstream angiogenic pathway. The sorafenib resistant ability of TR/NUPR1 was further examined in vitro and in vivo . Clinical relevance of TR, NUPR1 and platelet-derived growth factor A (PDGFA) were investigate in HCC samples using qRT-PCR and western blot. Results : Our experiments disclosed positive regulation of NUPR1 expression by Tsub3/sub/TR through direct binding to the -2066 to -1910 region of the NUPR1 promoter. Elevated NUPR1 and TR expression link to poor survival in clinical HCC specimens. An analysis of clinicopathological parameters showed that expression of NUPR1 is associated with vascular invasion and pathology stage. Functional studies revealed that NUPR1 induced endothelial cell angiogenesis in vitro and in vivo . Using a human angiogenesis array, we identified PDGFA as a target of NUPR1 in the downstream angiogenic pathway. NUPR1 induced transcription of PDGFA through direct binding to the corresponding promoter region, and inhibition of the PDGFA signaling pathway impaired angiogenesis in human umbilical vein endothelial cells (HUVECs). Notably, the angiogenic effects of NUPR1/PDGFA were mediated by the MEK/ERK signaling pathway. TR/NUPR1 expression increased cell viability and resistance to sorafenib treatment. Moreover NUPR1 expression was positively correlated with TRα, TRβ, and PDGFA expression. Conclusions : We propose that the Tsub3/sub/TR/NUPR1/PDGFA/MEK/ERK axis has a vital role in hepatocarcinogenesis and suggest NUPR1 as a potential therapeutic target in HCC.
机译:背景与目的:肝细胞癌(HCC)是世界范围内导致癌症死亡的主要原因。许多研究表明,细胞甲状腺激素信号传导的破坏会促进HCC进程。然而,HCC中甲状腺激素作用下游基因调控的潜在机制仍然难以捉摸。在本研究中,我们确定了NUPR1(核蛋白1)是一种应力诱导蛋白,在各种肿瘤中均过表达,并被三碘甲状腺素/甲状腺激素受体(T 3 / TR)信号上调,并针对阐明其在癌症进展中的血管生成中的作用。方法:采用定量反转录PCR,荧光素酶启动子和染色质免疫沉淀的方法,通过T 3 / TR鉴定NUPR1调控机制。进行体外和体内血管形成以检测NUPR1的血管生成功能。进行人血管生成阵列以鉴定下游血管生成途径。 TR / NUPR1的索拉非尼耐药能力在体内外均进行了检测。使用qRT-PCR和Western blot研究了HCC样本中TR,NUPR1和血小板衍生的生长因子A(PDGFA)的临床相关性。结果:我们的实验揭示了T 3 / TR通过直接结合NUPR1启动子的-2066至-1910区来正调控NUPR1的表达。 NUPR1和TR表达的升高与临床HCC标本的不良存活有关。临床病理参数分析表明,NUPR1的表达与血管浸润和病理分期有关。功能研究表明,NUPR1在体内外均可诱导内皮细胞血管生成。使用人类血管生成阵列,我们确定PDGFA为下游血管生成途径中NUPR1的靶标。 NUPR1通过直接结合到相应的启动子区域来诱导PDGFA的转录,并且PDGFA信号通路的抑制削弱了人脐静脉内皮细胞(HUVEC)的血管生成。值得注意的是,NUPR1 / PDGFA的血管生成作用是由MEK / ERK信号通路介导的。 TR / NUPR1表达增加了细胞活力和对索拉非尼治疗的抗性。此外,NUPR1表达与TRα,TRβ和PDGFA表达正相关。结论:我们认为T 3 / TR / NUPR1 / PDGFA / MEK / ERK轴在肝癌发生中起着至关重要的作用,并建议NUPR1作为肝癌的潜在治疗靶点。

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