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Nuclear Localization of Phospholipase D1 Mediates the Activation of Nuclear Protein Kinase Cα and Extracellular Signal-regulated Kinase Signaling Pathways*

机译:磷脂酶D1的核定位介导核蛋白激酶Cα和细胞外信号调节激酶信号通路的激活*

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摘要

Recent studies highlight the existence of a nuclear lipid metabolism related to cellular proliferation. However, the importance of nuclear phosphatidylcholine (PC) metabolism is poorly understood. Therefore, we were interested in nuclear PC as a source of second messengers and, particularly, nuclear localization of PC-specific phospholipase D (PLD). In the present study we have identified the nuclear localization sequence (NLS) of PLD1 whose mutation abolished its nuclear import. Recently, we reported that caspase-mediated cleavage of PLD1 generates the N-terminal fragment (NF-PLD1) and C-terminal fragment (CF-PLD1). Here we show that CF-PLD1 but not NF-PLD1, is exclusively imported into the nucleus via its functional NLS, whereas only some portions of intact PLD1 were localized into the nucleus. The NLS of intact PLD1 or CF-PLD1 is required for interaction with importin-β, which is known to mediate nuclear import. The amount of intact PLD1 or CF-PLD1 translocated into nucleus is correlated with its binding affinity with importin-β. Ultimately, nuclear localization of intact PLD1 but not CF-PLD1 mediates the activation of nuclear protein kinase Cα and extracellular signal-regulated kinase signaling pathways. Taken together, we propose that nuclear localization of PLD1 via the NLS and its interaction with importin-β may provide new insights on the functional role of nuclear PLD1 signaling.
机译:最近的研究突出了与细胞增殖有关的核脂质代谢的存在。但是,人们对核磷脂酰胆碱(PC)代谢的重要性了解得很少。因此,我们对核PC作为第二信使的来源特别是PC特异性磷脂酶D(PLD)的核定位感兴趣。在本研究中,我们已经确定了PLD1的核定位序列(NLS),其突变消除了其核输入。最近,我们报道半胱天冬酶介导的PLD1裂解产生N端片段(NF-PLD1)和C端片段(CF-PLD1)。在这里,我们显示CF-PLD1(而非NF-PLD1)仅通过其功能性NLS导入细胞核,而只有完整PLD1的某些部分定位在细胞核中。与importin-β相互作用需要完整的PLD1或CF-PLD1的NLS,而后者已知会介导核输入。完整的PLD1或CF-PLD1转移到细胞核中的数量与其与importin-β的结合亲和力相关。最终,完整PLD1而非CF-PLD1的核定位会介导核蛋白激酶Cα和细胞外信号调节激酶信号通路的激活。两者合计,我们建议通过NLS PLD1的核定位及其与importin-β的相互作用可能提供有关核PLD1信号传导功能的新见解。

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