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A126 位于活性位点,TI 环中的 TI167/168 是 PTEN 底物特异性的关键决定因素。

A126 in the active site and TI167/168 in the TI loop are essential determinants of the substrate specificity of PTEN.

机构信息

Institute of Physiology and Pathophysiology, Philipps-University Marburg, Deutschhausstr. 1-2, 35037, Marburg, Germany.

Division of Physiology, Department of Physiology and Medical Physics, Medical University of Innsbruck, 6020, Innsbruck, Austria.

出版信息

Cell Mol Life Sci. 2018 Nov;75(22):4235-4250. doi: 10.1007/s00018-018-2867-z. Epub 2018 Jul 9.

Abstract

PTEN prevents tumor genesis by antagonizing the PI3 kinase/Akt pathway through D3 site phosphatase activity toward PI(3,4)P and PI(3,4,5)P. The structural determinants of this important specificity remain unknown. Interestingly, PTEN shares remarkable homology to voltage-sensitive phosphatases (VSPs) that dephosphorylate D5 and D3 sites of PI(4,5)P, PI(3,4)P, and PI(3,4,5)P. Since the catalytic center of PTEN and VSPs differ markedly only in TI/gating loop and active site motif, we wondered whether these differences explained the variation of their substrate specificity. Therefore, we introduced mutations into PTEN to mimic corresponding sequences of VSPs and studied phosphatase activity in living cells utilizing engineered, voltage switchable PTEN, a Ci-VSP/PTEN chimera that retains D3 site activity of the native enzyme. Substrate specificity of this enzyme was analyzed with whole-cell patch clamp in combination with total internal reflection fluorescence microscopy and genetically encoded phosphoinositide sensors. In PTEN, mutating TI167/168 in the TI loop into the corresponding ET pair of VSPs induced VSP-like D5 phosphatase activity toward PI(3,4,5)P, but not toward PI(4,5)P. Combining TI/ET mutations with an A126G exchange in the active site removed major sequence variations between PTEN and VSPs and resulted in D5 activity toward PI(4,5)P and PI(3,4,5)P of PTEN. This PTEN mutant thus fully reproduced the substrate specificity of native VSPs. Importantly, the same combination of mutations also induced D5 activity toward PI(3,4,5)P in native PTEN demonstrating that the same residues determine the substrate specificity of the tumor suppressor in living cells. Reciprocal mutations in VSPs did not alter their substrate specificity, but reduced phosphatase activity. In summary, A126 in the active site and TI167/168 in the TI loop are essential determinants of PTEN's substrate specificity, whereas additional features might contribute to the enzymatic activity of VSPs.

摘要

PTEN 通过其 D3 位磷酸酶活性拮抗 PI3 激酶/Akt 通路来抑制肿瘤发生,从而使 PI(3,4)P 和 PI(3,4,5)P 去磷酸化。这种重要的特异性的结构决定因素尚不清楚。有趣的是,PTEN 与电压敏感磷酸酶(VSPs)具有显著的同源性,后者可使 PI(4,5)P、PI(3,4)P 和 PI(3,4,5)P 的 D5 和 D3 位点去磷酸化。由于 PTEN 和 VSPs 的催化中心仅在 TI/门控环和活性位点基序上存在明显差异,我们想知道这些差异是否解释了它们底物特异性的变化。因此,我们引入突变模拟 VSP 的相应序列,并利用工程化的电压开关 PTEN 研究活细胞中的磷酸酶活性,该酶是一种 Ci-VSP/PTEN 嵌合体,保留了天然酶的 D3 位活性。该酶的底物特异性通过全细胞膜片钳与全内反射荧光显微镜结合和遗传编码的磷酸肌醇传感器进行分析。在 PTEN 中,将 TI 环中的 TI167/168 突变为 VSP 的对应 ET 对,可诱导对 PI(3,4,5)P 的 VSP 样 D5 磷酸酶活性,但对 PI(4,5)P 没有作用。将 TI/ET 突变与活性位点中的 A126G 交换结合使用,消除了 PTEN 和 VSP 之间的主要序列差异,并导致 PTEN 对 PI(4,5)P 和 PI(3,4,5)P 的 D5 活性。因此,该 PTEN 突变体完全再现了天然 VSP 的底物特异性。重要的是,相同的突变组合也诱导了天然 PTEN 中 PI(3,4,5)P 的 D5 活性,表明相同的残基决定了肿瘤抑制物在活细胞中的底物特异性。VSP 中的反向突变并未改变其底物特异性,但降低了磷酸酶活性。总之,活性位点中的 A126 和 TI 环中的 TI167/168 是 PTEN 底物特异性的基本决定因素,而其他特征可能有助于 VSP 的酶活性。

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