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Localization of phospholipase D1 to caveolin-enriched membrane via palmitoylation: Implications for epidermal growth factor signaling

机译:磷脂酶D1通过Palmitoylation定位到富含小窝蛋白的膜:对表皮生长因子信号传导的影响

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Phospholipase D (PLD) has been suggested to mediate epidermal growth factor (EGF) signaling. However, the molecular mechanism of EGF-induced PLD activation has not yet been elucidated. We investigated the importance of the phosphorylation and compartmentalization of PLD1 in EGF signaling. EGF treatment of COS-7 cells transiently expressing PLD1 stimulated PLD1 activity and induced PLD1 phosphorylation. The EGF-induced phosphorylation of threonine147 was completely blocked and the activity of PLD1 attenuated by point mutations (S2A/T147A/S561A) of PLD1 phosphorylation sites. The expression of a dominant negative PKCalpha mutant by adenovirus-mediated gene transfer greatly inhibited the phosphorylation and activation of PLD1 induced by EGF in PLD1-transfected COS-7 cells. EGF-induced PLD1 phosphorylation occurred primarily in the caveoil-enriched membrane (CEM) fraction, and the kinetics of PLD1 phosphorylation. in the CEM were strongly correlated with PLD1 phosphorylation in the total membrane. Interestingly, EGF-induced PLD1 phosphorylation and activation and the coimmunoprecipitation of PLD1 with caveohn-1 and the EGF receptor in the CEM were significantly attenuated in the palmitoylation-deficient C240S/C241S mutant, which did not localize to the CEM. Immunocytochemical analysis revealed that wild-type PLD1 colocalized with caveohn-1 and the EGF receptor and that phosphorylated PLD1 was localized exclusively in the plasma membrane, although some PLD1 was also detected in vesicular structures. Transfection of wild-type PLD1 but not of C240S/C241S mutant increased EGF-induced raf-1 translocation to the CEM and ERK phosphorylation. This study shows, for the first time, that EGF-induced PLD1 phosphorylation and activation occur in the CEM and that the correct localization of PLD1 to the CEM via palmitoylation is critical for EGF signaling. [References: 60]
机译:已经建议磷脂酶D(PLD)介导表皮生长因子(EGF)信号传导。但是,尚未阐明EGF诱导的PLD激活的分子机制。我们调查了EGF信号中PLD1磷酸化和区分开的重要性。 EGF处理瞬时表达PLD1的COS-7细胞可刺激PLD1活性并诱导PLD1磷酸化。 EGF诱导的苏氨酸147的磷酸化被完全阻断,PLD1的活性因PLD1磷酸化位点的点突变(S2A / T147A / S561A)而减弱。腺病毒介导的基因转移表达的显性负性PKCalpha突变体大大抑制了EGF诱导的PLD1转染的COS-7细胞中PLD1的磷酸化和激活。 EGF诱导的PLD1磷酸化主要发生在富集油的膜(CEM)馏分中,以及PLD1磷酸化的动力学。 CEM中的CRP与总膜中的PLD1磷酸化密切相关。有趣的是,在缺乏棕榈酰化的C240S / C241S突变体中,EGF诱导的PLD1磷酸化和激活以及PLD1与caveohn-1和EGF受体的共免疫沉淀显着减弱,而该突变体并不局限于CEM。免疫细胞化学分析显示,野生型PLD1与Caveohn-1和EGF受体共定位,磷酸化的PLD1仅定位在质膜中,尽管在水泡结构中也检测到了一些PLD1。野生型PLD1的转染而不是C240S / C241S突变体的转染增加了EGF诱导的raf-1易位至CEM和ERK磷酸化。这项研究首次表明,EGF诱导的PLD1磷酸化和激活发生在CEM中,而通过棕榈酰化将PLD1正确定位到CEM对于EGF信号传导至关重要。 [参考:60]

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