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E3 连接酶β-转导素重复蛋白 1(β-TrCP1)在胶质母细胞瘤中的定位错误,使 PH 域富含亮氨酸重复蛋白磷酸酶 1(PHLPP1)和 Akt 之间的负反馈脱耦。

Mislocalization of the E3 ligase, β-transducin repeat-containing protein 1 (β-TrCP1), in glioblastoma uncouples negative feedback between the pleckstrin homology domain leucine-rich repeat protein phosphatase 1 (PHLPP1) and Akt.

机构信息

Department of Pharmacology, University of California at San Diego, La Jolla, California 92093-0721, USA.

出版信息

J Biol Chem. 2011 Jun 3;286(22):19777-88. doi: 10.1074/jbc.M111.237081. Epub 2011 Mar 28.

Abstract

The PH domain leucine-rich repeat protein phosphatase, PHLPP, plays a central role in controlling the amplitude of growth factor signaling by directly dephosphorylating and thereby inactivating Akt. The cellular levels of PHLPP1 have recently been shown to be enhanced by its substrate, activated Akt, via modulation of a phosphodegron recognized by the E3 ligase β-TrCP1, thus providing a negative feedback loop to tightly control cellular Akt output. Here we show that this feedback loop is lost in aggressive glioblastoma but not less aggressive astrocytoma. Overexpression and pharmacological studies reveal that loss of the feedback loop does not result from a defect in PHLPP1 protein or in the upstream kinases that control its phosphodegron. Rather, the defect arises from altered localization of β-TrCP1; in astrocytoma cell lines and in normal brain tissue the E3 ligase is predominantly cytoplasmic, whereas in glioblastoma cell lines and patient-derived tumor neurospheres, the E3 ligase is confined to the nucleus and thus spatially separated from PHLPP1, which is cytoplasmic. Restoring the localization of β-TrCP1 to the cytosol of glioblastoma cells rescues the ability of Akt to regulate PHLPP1 stability. Additionally, we show that the degradation of another β-TrCP1 substrate, β-catenin, is impaired and accumulates in the cytosol of glioblastoma cell lines. Our findings reveal that the cellular localization of β-TrCP1 is altered in glioblastoma, resulting in dysregulation of PHLPP1 and other substrates such as β-catenin.

摘要

PH 结构域亮氨酸丰富重复蛋白磷酸酶 PHLPP 在控制生长因子信号幅度方面发挥着核心作用,它通过直接去磷酸化 Akt 从而使其失活。最近发现,PHLPP1 的细胞水平通过激活 Akt 调节由 E3 连接酶 β-TrCP1 识别的磷酸肽基序而被增强,从而提供了一个负反馈回路以紧密控制细胞内 Akt 的输出。在这里,我们表明这种反馈回路在侵袭性神经胶质瘤中丢失,但在侵袭性较低的星形细胞瘤中并未丢失。过表达和药理学研究表明,这种反馈回路的缺失不是由于 PHLPP1 蛋白或控制其磷酸肽基序的上游激酶缺陷所致。相反,缺陷是由于 β-TrCP1 的定位改变所致;在星形细胞瘤系和正常脑组织中,E3 连接酶主要位于细胞质中,而在神经胶质瘤细胞系和源自患者的肿瘤神经球中,E3 连接酶被局限在核内,从而与位于细胞质中的 PHLPP1 空间分离。将 β-TrCP1 的定位恢复到神经胶质瘤细胞的细胞质中,可以挽救 Akt 调节 PHLPP1 稳定性的能力。此外,我们还表明另一个β-TrCP1 底物 β-连环蛋白的降解受损并在神经胶质瘤细胞系的细胞质中积累。我们的研究结果表明,β-TrCP1 的细胞定位在神经胶质瘤中发生改变,导致 PHLPP1 和其他底物(如β-连环蛋白)的失调。

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