一种酪蛋白激酶II型(CKII)样核蛋白激酶与拓扑异构酶I结合,磷酸化并激活

Turman M.A., Douvas A.
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引用次数: 27

摘要

拓扑异构酶I (Topo I)参与许多涉及超卷曲DNA解绕的细胞功能,如转录和复制。Topo I也是进行性系统性硬皮病(硬皮病)自身免疫抗体的靶标,Topo I的异常调节可能会影响硬皮病中胶原蛋白的过量产生。在体内,Topo I在丝氨酸残基处被磷酸化,在体外,Topo I的活性通过酪蛋白激酶II (CKII)和蛋白激酶C (PKC)的磷酸化而增加。在这项研究中,来自大鼠肝核的蛋白激酶活性在Bio-Rex 70阳离子交换色谱中显示与Topo I共纯化。该激酶可以磷酸化Topo I的老年性残基,导致拓扑异构酶活性增加三倍。该激酶与硬皮病自身免疫抗Topo I抗体共沉淀的能力证明了该激酶与Topo I之间相对紧密的关联。该激酶的活性与CKII相似,不依赖于Ca2+和环核苷酸,可以利用ATP或GTP作为磷酸供体,并能磷酸化酪蛋白和磷维素。但组蛋白除外。然而,与典型的CKII不同的是,Topo i相关激酶几乎可以像Mg2+一样利用Mn2+,它不受多胺的刺激,并且它似乎不经历自磷酸化。总之,我们证明大鼠肝脏Topo I与CKII样蛋白激酶密切相关,而CKII样蛋白激酶可以磷酸化并激活Topo I。这些发现为CKII或CKII样蛋白激酶是Topo I的生理调节剂提供了确凿的证据。
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A Casein Kinase Type II (CKII)-like Nuclear Protein Kinase Associates with, Phosphorylates, and Activates Topoisomerase I

Topoisomerase I (Topo I) is involved in many cellular functions that involve unwinding of supercoiled DNA, such as transcription and replication. Topo I is also the target of autoimmune antibodies in progressive systemic sclerosis (scleroderma), and abnormal regulation of Topo I may influence the excessive production of collagen found in scleroderma. Topo I is phosphorylated in vivo at serine residues and, in vitro, the activity of Topo I is increased by phosphorylation by casein kinase type II (CKII) and protein kinase C (PKC). In this study, a protein kinase activity from rat liver nuclei is shown to copurify with Topo I during Bio-Rex 70 cation exchange chromatography. The kinase can phosphorylate Topo I at senile residues, resulting in a threefold increase in topoisomerase activity. A relatively tight association between this kinase and Topo I is demonstrated by the ability to coprecipitate the kinase with scleroderma autoimmune anti-Topo I antibodies. The kinase activity is similar to CKII since it is Ca2+ and cyclic nucleotide independent, it can utilize either ATP or GTP as phosphate donor, and it can phosphorylate casein and phosvitin. but not histones. However, unlike typical CKII, the Topo I-associated kinase could utilize Mn2+ almost as well as Mg2+, it is not stimulated by polyamines, and it does not appear to undergo autophosphorylation. In conclusion, we demonstrate that rat liver Topo I is relatively tightly associated with a CKII-like protein kinase that can phosphorylate and activate Topo I. These findings provide corroborative evidence that CKII, or a CKII-like protein kinase, is a physiologic regulator of Topo I.

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