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SPOP 通过泛素化和降解 PDK1 抑制 AKT 激酶活性和致癌功能。

SPOP-mediated ubiquitination and degradation of PDK1 suppresses AKT kinase activity and oncogenic functions.

机构信息

Institute of Precision Medicine, the First Affiliated Hospital, Sun Yat-Sen University, Guangzhou, 510275, Guangdong, China.

National Clinical Research Center for Hematologic Diseases, Jiangsu Institute of Hematology, The First Affiliated Hospital of Soochow University, Suzhou, China.

出版信息

Mol Cancer. 2021 Aug 5;20(1):100. doi: 10.1186/s12943-021-01397-5.

Abstract

BACKGROUND

3-phosphoinositide-dependent protein kinase-1 (PDK1) acts as a master kinase of protein kinase A, G, and C family (AGC) kinase to predominantly govern cell survival, proliferation, and metabolic homeostasis. Although the regulations to PDK1 downstream substrates such as protein kinase B (AKT) and ribosomal protein S6 kinase beta (S6K) have been well established, the upstream regulators of PDK1, especially its degrader, has not been defined yet.

METHOD

A clustered regularly interspaced short palindromic repeats (CRISPR)-based E3 ligase screening approach was employed to identify the E3 ubiquitin ligase for degrading PDK1. Western blotting, immunoprecipitation assays and immunofluorescence (IF) staining were performed to detect the interaction or location of PDK1 with speckle-type POZ protein (SPOP). Immunohistochemistry (IHC) staining was used to study the expression of PDK1 and SPOP in prostate cancer tissues. In vivo and in vitro ubiquitination assays were performed to measure the ubiquitination conjugation of PDK1 by SPOP. In vitro kinase assays and mass spectrometry approach were carried out to identify casein kinase 1 (CK1) and glycogen synthase kinase 3 (GSK3)-mediated PDK1 phosphorylation. The biological effects of PDK1 mutations and correlation with SPOP mutations were performed with colony formation, soft agar assays and in vivo xenograft mouse models.

RESULTS

We identified that PDK1 underwent SPOP-mediated ubiquitination and subsequent proteasome-dependent degradation. Specifically, SPOP directly bound PDK1 by the consensus degron in a CK1/GSK3β-mediated phosphorylation dependent manner. Pathologically, prostate cancer patients associated mutations of SPOP impaired PDK1 degradation and thus activated the AKT kinase, resulting in tumor malignancies. Meanwhile, mutations that occurred around or within the PDK1 degron, by either blocking SPOP to bind the degron or inhibiting CK1 or GSK3β-mediated PDK1 phosphorylation, could markedly evade SPOP-mediated PDK1 degradation, and played potently oncogenic roles via activating the AKT kinase.

CONCLUSIONS

Our results not only reveal a physiological regulation of PDK1 by E3 ligase SPOP, but also highlight the oncogenic roles of loss-of-function mutations of SPOP or gain-of-function mutations of PDK1 in tumorigenesis through activating the AKT kinase.

摘要

背景

3-磷酸肌醇依赖的蛋白激酶-1(PDK1)作为蛋白激酶 A、G 和 C 家族(AGC)激酶的主要激酶,主要调节细胞存活、增殖和代谢稳态。尽管 PDK1 下游底物(如蛋白激酶 B(AKT)和核糖体蛋白 S6 激酶β(S6K))的调控已经得到很好的建立,但 PDK1 的上游调控因子,特别是其降解物,尚未确定。

方法

采用基于成簇规律间隔短回文重复(CRISPR)的 E3 连接酶筛选方法,鉴定 PDK1 的 E3 泛素连接酶。采用 Western blot、免疫沉淀实验和免疫荧光(IF)染色检测 PDK1 与斑点型 POZ 蛋白(SPOP)的相互作用或位置。免疫组织化学(IHC)染色用于研究前列腺癌组织中 PDK1 和 SPOP 的表达。进行体内和体外泛素化实验,以测量 SPOP 对 PDK1 的泛素化缀合。进行体外激酶实验和质谱方法,以鉴定细胞周期蛋白激酶 1(CK1)和糖原合酶激酶 3(GSK3)介导的 PDK1 磷酸化。采用集落形成、软琼脂实验和体内异种移植小鼠模型,研究 PDK1 突变与 SPOP 突变的相关性及其与肿瘤发生的关系。

结果

我们发现 PDK1 经历了 SPOP 介导的泛素化和随后的蛋白酶体依赖性降解。具体来说,SPOP 通过 CK1/GSK3β 介导的磷酸化依赖性方式直接与 PDK1 的共识降解基序结合。在病理学上,与 SPOP 相关的前列腺癌患者的突变会削弱 PDK1 的降解,从而激活 AKT 激酶,导致肿瘤恶性。同时,发生在 PDK1 降解基序周围或内部的突变,通过阻断 SPOP 与降解基序结合或抑制 CK1 或 GSK3β 介导的 PDK1 磷酸化,可显著逃避 SPOP 介导的 PDK1 降解,并通过激活 AKT 激酶发挥强大的致癌作用。

结论

我们的研究结果不仅揭示了 E3 连接酶 SPOP 对 PDK1 的生理调控作用,还强调了 SPOP 功能丧失突变或 PDK1 功能获得性突变通过激活 AKT 激酶在肿瘤发生中的致癌作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb04/8340461/7c44f8f817f2/12943_2021_1397_Fig1_HTML.jpg

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