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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Functions and pathophysiological roles of phospholipase D in the brain.
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Functions and pathophysiological roles of phospholipase D in the brain.

机译:脑中磷脂酶D的功能和病理生理作用。

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Ten years after the isoforms of mammalian phospholipase D (PLD), PLD1 and 2, were cloned, their roles in the brain remain speculative but several lines of evidence now implicate these enzymes in basic cell functions such as vesicular trafficking as well as in brain development. Many mitogenic factors, including neurotransmitters and growth factors, activate PLD in neurons and astrocytes. Activation of PLD downstream of protein kinase C seems to be a required step for astroglial proliferation. The characteristic disruption of the PLD signaling pathway by ethanol probably contributes to the delay of brain growth in fetal alcohol syndrome. The post-natal increase of PLD activities concurs with synapto- and myelinogenesis in the brain and PLD is apparently involved in neurite formation. In the adult and aging brain, PLD activity has antiapoptotic properties suppressing ceramide formation. Increased PLD activities in acute and chronic neurodegeneration as well as in inflammatory processes are evidently due to astrogliosis and may be associated with protective responses of tissue repair and remodeling. ARF-regulated PLD participates in receptor endocytosis as well as in exocytosis of neurotransmitters where PLD seems to favor vesicle fusion by modifications of the shape and charge of lipid membranes. Finally, PLD activities contribute free choline for the synthesis of acetylcholine in the brain. Novel tools such as RNA interference should help to further elucidate the roles of PLD isoforms in brain physiology and pathology.
机译:克隆了哺乳动物磷脂酶D(PLD),PLD1和2的同工型10年后,它们在脑中的作用仍是推测性的,但现在有许多证据表明这些酶参与了基本的细胞功能,如水泡运输以及脑发育。许多有丝分裂因子(包括神经递质和生长因子)激活神经元和星形胶质细胞中的PLD。蛋白激酶C下游的PLD的活化似乎是星形胶质细胞增殖的必需步骤。乙醇对PLD信号通路的特征性破坏可能是导致胎儿酒精综合症大脑发育延迟的原因。产后PLD活性的增加与大脑中的突触和髓鞘形成同时发生,而PLD显然参与了神经突的形成。在成年和衰老的大脑中,PLD活性具有抑制神经酰胺形成的抗凋亡特性。星形胶质细胞增多症显然是由于急速和慢性神经退行性变以及炎症过程中PLD活性的增加,可能与组织修复和重塑的保护性反应有关。 ARF调节的PLD参与受体的内吞作用以及神经递质的胞吐作用,其中PLD似乎通过改变脂质膜的形状和电荷来促进囊泡融合。最后,PLD活性为大脑中乙酰胆碱的合成贡献了游离胆碱。 RNA干扰等新工具应有助于进一步阐明PLD亚型在脑生理和病理学中的作用。

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