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Casein kinase I δ/ɛ phosphorylates topoisomerase IIα at serine-1106 and modulates DNA cleavage activity

机译:酪蛋白激酶Iδ/ɛ磷酸化丝氨酸1106处的拓扑异构酶IIα并调节DNA裂解活性

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摘要

We previously reported that phosphorylation of topoisomerase (topo) IIα at serine-1106 (Ser-1106) regulates enzyme activity and sensitivity to topo II-targeted drugs. In this study we demonstrate that phosphorylation of Ser-1106, which is flanked by acidic amino acids, is regulated in vivo by casein kinase (CK) Iδ and/or CKIɛ, but not by CKII. The CKI inhibitors, CKI-7 and IC261, reduced Ser-1106 phosphorylation and decreased formation of etoposide-stabilized topo II–DNA cleavable complex. In contrast, the CKII inhibitor, 5,6-dichlorobenzimidazole riboside, did not affect etoposide-stabilized topo II–DNA cleavable complex formation. Since, IC261 specifically targets the Ca2+-regulated isozymes, CKIδ and CKIɛ, we examined the effect of down-regulating these enzymes on Ser-1106 phosphorylation. Down-regulation of these isozymes with targeted si-RNAs led to hypophosphorylation of the Ser-1106 containing peptide. However, si-RNA-mediated down-regulation of CKIIα and α′ did not alter Ser-1106 phosphorylation. Furthermore, reduced phosphorylation of Ser-1106, observed in HRR25 (CKIδ/ɛ homologous gene)-deleted Saccharomyces cerevisiae cells transformed with human topo IIα, was enhanced following expression of human CKIɛ. Down-regulation of CKIδ and CKIɛ also led to reduced formation of etoposide stabilized topo II–DNA cleavable complex. These results provide strong support for an essential role of CKIδ/ɛ in phosphorylating Ser-1106 in human topo IIα and in regulating enzyme function.
机译:我们先前曾报道,在丝氨酸1106(Ser-1106)处的拓扑异构酶(topo)IIα的磷酸化可调节酶活性和对靶向topo II的药物的敏感性。在这项研究中,我们证明,侧翼为酸性氨基酸的Ser-1106的磷酸化在体内受酪蛋白激酶(CK)Iδ和/或CKI 3调控,但不受CKII调控。 CKI抑制剂CKI-7和IC261减少了Ser-1106磷酸化,并减少了依托泊苷稳定的topo II-DNA可裂解复合物的形成。相比之下,CKII抑制剂5,6-二氯苯并咪唑核糖苷不会影响依托泊苷稳定的topo II-DNA可裂解复合物的形成。由于IC261专门针对Ca 2 + 调节的同功酶CKIδ和CKIɛ,因此我们研究了下调这些酶对Ser-1106磷酸化的影响。这些同工酶与靶向si-RNA的下调导致含有Ser-1106的肽的磷酸化不足。但是,siRNA介导的CKIIα和α'的下调并没有改变Ser-1106的磷酸化。此外,在表达人CKIɛ后,在HRR25(CKIδ/ɛ同源基因)缺失的由人topoIIα转化的酿酒酵母细胞中观察到Ser-1106的磷酸化降低。 CKIδ和CKIɛ的下调也导致依托泊苷稳定的topo II-DNA可裂解复合物的形成减少。这些结果为CKIδ/ɛ在使人类topoIIα中的Ser-1106磷酸化和调节酶功能中的重要作用提供了有力的支持。

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