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Fbxl12 通过介导钙调蛋白激酶 I 的降解来触发 G1 期阻滞。

Fbxl12 triggers G1 arrest by mediating degradation of calmodulin kinase I.

机构信息

Department of Medicine, Acute Lung Injury Center of Excellence, The University of Pittsburgh, Pittsburgh, PA 15213, USA.

出版信息

Cell Signal. 2013 Oct;25(10):2047-59. doi: 10.1016/j.cellsig.2013.05.012. Epub 2013 May 23.

Abstract

Cell cycle progression through its regulatory control by changes in intracellular Ca(2+) levels at the G1/S transition mediates cellular proliferation and viability. Ca(2+)/CaM-dependent kinase 1 (CaMKI) appears critical in regulating the assembly of the cyclin D1/cdk4 complex essential for G1 progression, but how this occurs is unknown. Cyclin D1/cdk4 assembly in the early G1 phase is also regulated via binding to p27. Here, we show that a ubiquitin E3 ligase component, F-box protein Fbxl12, mediates CaMKI degradation via a proteasome-directed pathway leading to disruption of cyclin D1/cdk4 complex assembly and resultant G1 arrest in lung epithelia. We also demonstrate that i) CaMKI phosphorylates p27 at Thr(157) and Thr(198) in human cells and at Thr(170) and Thr(197) in mouse cells to modulate its subcellular localization; ii) Fbxl12-induced CaMKI degradation attenuates p27 phosphorylation at these sites in early G1 and iii) activation of CaMKI during G1 transition followed by p27 phosphorylation appears to be upstream to other p27 phosphorylation events, an effect abrogated by Fbxl12 overexpression. Lastly, known inducers of G1 arrest significantly increase Fbxl12 levels in cells. Thus, Fbxl12 may be a previously uncharacterized, functional growth inhibitor regulating cell cycle progression that might be used for mechanism-based therapy.

摘要

细胞周期通过细胞内 Ca(2+)水平在 G1/S 转换时的变化进行调节控制,介导细胞增殖和存活。Ca(2+)/钙调蛋白依赖性激酶 1(CaMKI)在调节细胞周期蛋白 D1/cdk4 复合物的组装中似乎至关重要,该复合物对于 G1 进展是必需的,但具体机制尚不清楚。细胞周期蛋白 D1/cdk4 复合物在早期 G1 期的组装也通过与 p27 的结合进行调节。在这里,我们发现一个泛素 E3 连接酶组件,F 盒蛋白 Fbxl12,通过一个蛋白酶体靶向途径介导 CaMKI 的降解,导致细胞周期蛋白 D1/cdk4 复合物组装的破坏,从而导致肺上皮细胞的 G1 期阻滞。我们还证明了:i)CaMKI 在人类细胞中磷酸化 p27 的 Thr(157)和 Thr(198),以及在小鼠细胞中磷酸化 Thr(170)和 Thr(197),以调节其亚细胞定位;ii)Fbxl12 诱导的 CaMKI 降解在早期 G1 期减弱了这些位点的 p27 磷酸化;iii)G1 转换期间 CaMKI 的激活和随后的 p27 磷酸化似乎是其他 p27 磷酸化事件的上游事件,而过表达 Fbxl12 会阻断这种作用。最后,已知的 G1 期阻滞诱导物显著增加了细胞中的 Fbxl12 水平。因此,Fbxl12 可能是一种以前未被描述的、功能性的生长抑制剂,调节细胞周期进程,可用于基于机制的治疗。

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