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5-Fluoro-2-indolyl des-chlorohalopemide (FIPI), a Phospholipase D Pharmacological Inhibitor That Alters Cell Spreading and Inhibits Chemotaxis

机译:5-氟-2-吲哚基去氯卤丙啶(FIPI),磷脂酶D 改变细胞扩散和抑制的药理抑制剂 趋化性

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摘要

The signaling enzyme phospholipase D (PLD) and the lipid second messenger it generates, phosphatidic acid (PA), are implicated in many cell biological processes, including Ras activation, cell spreading, stress fiber formation, chemotaxis, and membrane vesicle trafficking. PLD production of PA is inhibited by the primary alcohol 1-butanol, which has thus been widely employed to identify PLD/PA-driven processes. However, 1-butanol does not always effectively reduce PA accumulation, and its use may result in PLD-independent deleterious effects. Consequently, identification of potent specific small-molecule PLD inhibitors would be an important advance for the field. We examine one such here, 5-fluoro-2-indolyl des-chlorohalopemide (FIPI), which was identified recently in an in vitro chemical screen for PLD2 inhibitors, and show that it rapidly blocks in vivo PA production with subnanomolar potency. We were surprised to find that several biological processes blocked by 1-butanol are not affected by FIPI, suggesting the need for re-evaluation of proposed roles for PLD. However, FIPI does inhibit PLD regulation of F-actin cytoskeleton reorganization, cell spreading, and chemotaxis, indicating potential utility for it as a therapeutic for autoimmunity and cancer metastasis.
机译:信号酶磷脂酶D(PLD)及其产生的脂质第二信使磷脂酸(PA)与许多细胞生物学过程有关,包括Ras活化,细胞铺展,应激纤维形成,趋化性和膜囊泡运输。伯醇1-丁醇可抑制PA的PLD生成,因此伯醇1-丁醇已被广泛用于鉴定PLD / PA驱动的过程。但是,1-丁醇并不能总是有效地减少PA的积累,其使用可能会导致与PLD无关的有害影响。因此,鉴定有效的特异性小分子PLD抑制剂将是该领域的重要进展。我们研究了一种这样的化合物,即5-氟-2-吲哚基去氯卤丙啶(FIPI),最近在体外化学筛选中发现了PLD2抑制剂,并显示它能以亚纳摩尔级的能力迅速阻断体内PA的产生。我们惊讶地发现,被1-丁醇阻断的几种生物过程不受FIPI的影响,这表明需要对PLD的拟议作用进行重新评估。但是,FIPI确实会抑制PLD对F-肌动蛋白细胞骨架重组,细胞扩散和趋化性的调节,这表明FIPI可能作为自体免疫和癌症转移治疗剂。

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