首页> 外文期刊>Nucleic Acids Research >Protein kinase CK2 inactivates PRH/Hhex using multiple mechanisms to de-repress VEGF-signalling genes and promote cell survival
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Protein kinase CK2 inactivates PRH/Hhex using multiple mechanisms to de-repress VEGF-signalling genes and promote cell survival

机译:蛋白激酶CK2使用多种机制使PRH / Hhex失活,从而抑制VEGF信号转导基因并促进细胞存活

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Protein kinase CK2 promotes cell survival and the activity of this kinase is elevated in several cancers including chronic myeloid leukaemia. We have shown previously that phosphorylation of the Proline-Rich Homeodomain protein (PRH/Hhex) by CK2 inhibits the DNA-binding activity of this transcription factor. Furthermore, PRH represses the transcription of multiple genes encoding components of the VEGF-signalling pathway and thereby influences cell survival. Here we show that the inhibitory effects of PRH on cell proliferation are abrogated by CK2 and that CK2 inhibits the binding of PRH at the Vegfr-1 promoter. Phosphorylation of PRH by CK2 also decreases the nuclear association of PRH and induces its cleavage by the proteasome. Moreover, cleavage of phosphorylated PRH produces a stable truncated cleavage product which we have termed PRHΔC (HhexΔC). PRHΔC acts as a transdominant negative regulator of full-length PRH by sequestering TLE proteins that function as PRH co-repressors. We show that this novel regulatory mechanism results in the alleviation of PRH-mediated repression of Vegfr-1. We suggest that the re-establishment of PRH function through inhibition of CK2 could be of value in treatment of myeloid leukaemias, as well as other tumour types in which PRH is inactivated by phosphorylation.
机译:蛋白激酶CK2促进细胞存活,并且在包括慢性髓样白血病在内的多种癌症中,该激酶的活性得以提高。先前我们已经表明,CK2可以使脯氨酸丰富的Homeodomain蛋白(PRH / Hhex)磷酸化,从而抑制该转录因子的DNA结合活性。此外,PRH抑制编码VEGF信号通路成分的多个基因的转录,从而影响细胞存活。在这里,我们显示CK2消除了PRH对细胞增殖的抑制作用,并且CK2抑制了Vegfr-1启动子上PRH的结合。 CK2使PRH磷酸化也降低了PRH的核缔合并诱导其被蛋白酶体切割。而且,磷酸化PRH的裂解产生稳定的截短的裂解产物,我们将其称为PRHΔC(HhexΔC)。 PRHΔC通过隔离充当PRH共同阻遏物的TLE蛋白质,充当全长PRH的主要负调控因子。我们表明,这种新颖的监管机制导致减轻PRH介导的Vegfr-1的镇压。我们建议通过抑制CK2重建PRH功能可能在髓样白血病以及其他通过磷酸化使PRH失活的肿瘤类型的治疗中具有价值。

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