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BP-1T是一种具有抗血管生成作用的二苯甲酮-噻唑药效团,通过p53/MDM2介导的HIF-1α蛋白酶体降解来对抗HIF-1信号传导。

BP-1T, an antiangiogenic benzophenone-thiazole pharmacophore, counteracts HIF-1 signalling through p53/MDM2-mediated HIF-1α proteasomal degradation.

作者信息

Thirusangu Prabhu, Vigneshwaran V, Prashanth T, Vijay Avin B R, Malojirao Vikas H, Rakesh H, Khanum Shaukath Ara, Mahmood Riaz, Prabhakar B T

机构信息

Molecular Biomedicine Laboratory, Postgraduate Department of Studies and Research in Biotechnology, Sahyadri Science College (Autonomous), Kuvempu University, Shivamogga, Karnataka, 577203, India.

Department of Chemistry, Yuvaraja's College (Autonomous), University of Mysore, Mysore, Karnataka, 570 005, India.

出版信息

Angiogenesis. 2017 Feb;20(1):55-71. doi: 10.1007/s10456-016-9528-3. Epub 2016 Oct 14.

Abstract

Hypoxia is a feature of all solid tumours, contributing to tumour progression. Activation of HIF-1α plays a critical role in promoting tumour angiogenesis and metastasis. Since its expression is positively correlated with poor prognosis for cancer patients, HIF-1α is one of the most convincing anticancer targets. BP-1T is a novel antiproliferative agent with promising antiangiogenic effects. In the present study, the molecular mechanism underlying cytotoxic/antiangiogenic effects of BP-1T on tumour/non-tumour angiogenesis was evaluated. Evidences show that BP-1T exhibits potent cytotoxicity with prolonged activity and effectively regressed neovessel formation both in reliable non-tumour and tumour angiogenic models. The expression of CoCl-induced HIF-1α was inhibited by BP-1T in various p53 (WT)-expressing cancer cells, including A549, MCF-7 and DLA, but not in mutant p53-expressing SCC-9 cells. Mechanistically, BP-1T mediates the HIF-1α proteasomal degradation by activating p53/MDM2 pathway and thereby downregulated HIF-1α-dependent angiogenic genes such as VEGF-A, Flt-1, MMP-2 and MMP-9 under hypoxic condition of in vitro and in vivo solid tumour, eventually leading to abolition of migration and invasion. Based on these observations, we conclude that BP-1T acts on HIF-1α degradation through p53/MDM2 proteasome pathway.

摘要

缺氧是所有实体瘤的一个特征,有助于肿瘤进展。HIF-1α的激活在促进肿瘤血管生成和转移中起关键作用。由于其表达与癌症患者的不良预后呈正相关,HIF-1α是最有说服力的抗癌靶点之一。BP-1T是一种新型抗增殖剂,具有有前景的抗血管生成作用。在本研究中,评估了BP-1T对肿瘤/非肿瘤血管生成的细胞毒性/抗血管生成作用的分子机制。证据表明,BP-1T在可靠的非肿瘤和肿瘤血管生成模型中均表现出强大的细胞毒性且活性持久,并有效抑制了新血管形成。BP-1T在包括A549、MCF-7和DLA在内的各种表达p53(野生型)的癌细胞中抑制CoCl诱导的HIF-1α表达,但在表达突变型p53的SCC-9细胞中未观察到这种抑制作用。机制上,BP-1T通过激活p53/MDM2途径介导HIF-1α蛋白酶体降解,从而在体外和体内实体瘤缺氧条件下下调HIF-1α依赖性血管生成基因,如VEGF-A、Flt-1、MMP-2和MMP-9,最终导致迁移和侵袭能力的丧失。基于这些观察结果,我们得出结论,BP-1T通过p53/MDM2蛋白酶体途径作用于HIF-1α降解。

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