发布时间:2019-08-03 22:35 原文链接: VEGF,Hypoxia,andAngiogenesis

Vascular endothelial growth factor (VEGF) plays a key role in physiological blood vessel formation and pathological angiogenesis such as tumor growth and ischemic diseases. Hypoxia is a potent inducer of VEGF in vitro. The increase in secreted biologically active VEGF protein from cells exposed to hypoxia is partly because of an increased transcription rate, mediated by binding of hypoxia-inducible factor-1 (HIF1) to a hypoxia responsive element in the 5'-flanking region of the VEGF gene. bHLH-PAS transcription factor that interacts with the Ah receptor nuclear translocator (Arnt), and its predicted amino acid sequence exhibits significant similarity to the hypoxia-inducible factor 1alpha (HIF1a) product. HLF mRNA expression is closely correlated with that of VEGF mRNA.. The high expression level of HLF mRNA in the O2 delivery system of developing embryos and adult organs suggests that in a normoxic state, HLF regulates gene expression of VEGF, various glycolytic enzymes, and others driven by the HRE sequence, and may be involved in development of blood vessels and the tubular system of lung. VEGF expression is dramatically induced by hypoxia due in large part to an increase in the stability of its mRNA. HuR binds with high affinity and specificity to the VRS element that regulates VEGF mRNA stability by hypoxia. In addition, an internal ribosome entry site (IRES) ensures efficient translation of VEGF mRNA even under hypoxia. The VHL tumor suppressor (von Hippel-Lindau) regulates also VEGF expression at a post-transcriptional level. The secreted VEGF is a major angiogenic factor that regulates multiple endothelial cell functions, including mitogenesis. Cellular and circulating levels of VEGF are elevated in hematologic malignancies and are adversely associated with prognosis. Angiogenesis is a very complex, tightly regulated, multistep process, the targeting of which may well prove useful in the creation of novel therapeutic agents. Current approaches being investigated include the inhibition of angiogenesis stimulants (e.g., VEGF), or their receptors, blockade of endothelial cell activation, inhibition of matrix metalloproteinases, and inhibition of tumor vasculature. Preclinical, phase I, and phase II studies of both monoclonal antibodies to VEGF and blockers of the VEGF receptor tyrosine kinase pathway indicate that these agents are safe and offer potential clinical utility in patients with hematologic malignancies.

Contributor: Kosi Gramatikoff, PhD

REFERENCES: Ema M et al., A novel bHLH-PAS factor with close sequence similarity to hypoxia-inducible factor 1alpha regulates the VEGF expression and is potentially involved in lung and vascular development. Proc Natl Acad Sci U S A. (1997) Apr 29;94(9):4273-8. Fogarty M. finding ways to starve the canser seed: angiogenesis, lymphangiogenesis, bone metastases are focuses of intense redearch. The scientist, may 27, 2002 Giles FJ. The vascular endothelial growth factor (VEGF) signaling pathway: a therapeutic target in patients with hematologic malignancies. Oncologist. (2001);6 Suppl 5:32-9. Review. Gnarra JR et al., Post-transcriptional regulation of vascular endothelial growth factor mRNA by the product of the VHL tumor suppressor gene. Proc Natl Acad Sci U S A. (1996) Oct 1;93(20):10589-94. Levy NS, et al., Hypoxic stabilization of vascular endothelial growth factor mRNA by the RNA-binding protein HuR. J Biol Chem. (1998) Mar 13;273(11):6417-23. McMahon G. VEGF receptor signaling in tumor angiogenesis. Oncologist. 2000;5 Suppl 1:3-10. Review. Stein I, et al., Translation of vascular endothelial growth factor mRNA by internal ribosome entry: implications for translation under hypoxia. Mol Cell Biol. (1998) Jun;18(6):3112-9. vascular endothelial growth factor. Mini-reviews & technical information. http://www.rndsystems.com


相关文章

肿瘤治疗的强心剂,中国学者开发肿瘤治疗新策略

磷酸甘油酸突变酶1(PGAM1)通过其代谢活性以及与其他蛋白质(例如α平滑肌肌动蛋白(ACTA2))的相互作用,在癌症代谢和肿瘤进展中起关键作用。变构调节被认为是发现针对PGAM1的高选择性和有效抑制......

研究鉴别出调节肿瘤中血管发生的关键蛋白

近日,一项刊登在国际杂志NatureCommunications上的研究报告中,来自巴塞罗那生物医学研究所的科学家们通过研究发现,抑制p38蛋白的功能或能抑制人类和小鼠结肠癌中血管的生成,这一过程称之......

VEGF不仅促进肿瘤血管生长对乳腺癌细胞也有促进作用

血管内皮生长因子(VEGF)信号传导在癌症中的作用不仅在血管发生的情况下众所周知,而且在肿瘤细胞的功能调节中也是重要的。由其共同受体介导的称作神经纤维蛋白(NRP)的自分泌VEGF信号传导似乎对于维持......

研究发现癌症药物有助治疗糖尿病

近日,斯坦福大学医学院的两项研究确定了参与糖尿病病程发展的一系列蛋白质分子之间的相互作用。此外,他们还发现,市面上已有的一种获批准药物可以调节该途径。两项研究结果在线发表于9月15日的NatureMe......

日本研究出新方法有助改进脑梗塞治疗

在治疗脑梗塞时,利用药物溶解血栓是首选的治疗方法,但是发病3小时以上用该疗法可能导致脑出血。日本研究人员日前发现,一种被称为“血管内皮生长因子”(VEGF)的蛋白质是导致脑出血的诱因,并且开发出了抑制......

研究发现血管生成调控新机制及其在肿瘤形成中的功能

RKTG调控VEGF信号通路的模型图肿瘤血管生成在肿瘤的形成和转移过程中发挥了非常重要的作用,抑制肿瘤血管的生成是现代治疗肿瘤的一个重要策略。血管内皮细胞生长因子(VEGF)是调节血管生成和新生的最重......