首页> 美国卫生研究院文献>Biochemical Journal >Guanosine 5-gamma-thiotriphosphate induces membrane localization of cytosol-independent phospholipase D activity in a cell-free system from U937 promonocytic leucocytes.
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Guanosine 5-gamma-thiotriphosphate induces membrane localization of cytosol-independent phospholipase D activity in a cell-free system from U937 promonocytic leucocytes.

机译:鸟苷5-γ-硫代三磷酸在U937前单核白细胞的无细胞系统中诱导细胞溶素依赖性磷脂酶D活性的膜定位。

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摘要

Activation of phospholipase D (PLD) in phagocytic leucocytes requires protein components present in both the plasma membrane and the cytosol, but the catalytic and regulatory factors are not fully defined. We have characterized the effect of guanosine 5'-[gamma-thio]triphosphate (GTP[S]) on the subcellular requirements for reconstitution of PLD activity, using a cell-free system from U937 human promonocytic leucocytes. Incubation of permeabilized cells with 100 microM GTP[S] resulted in a membrane-localized PLD activity which was independent of added cytosol. The PLD activity of membranes from GTP[S]-treated cells was 7-fold greater than the basal activity of control membranes, and could be further augmented by the addition of ATP. This was the first demonstration of a stable agonist-regulated PLD activity in membranes from phagocytic leucocytes which was quantitatively comparable with that seen in a fully reconstituted system. Cytosol from GTP[S]-treated cells had a decreased capacity to support PLD activation, consistent with GTP[S]-induced depletion of a factor essential for reconstitution of PLD activity. Incubation of isolated membrane and cytosol with GTP[S] also resulted in a cytosol-independent PLD activity in the re-isolated membranes. The effect of GTP[S] could be mimicked by guanosine 5'-[beta gamma-imido]triphosphate, but not by aluminium fluoride, consistent with the involvement of a low-molecular-mass GTP-binding protein(s). Incubation of isolated subcellular fractions with GTP[S], followed by removal of unbound nucleotide, suggested that at least one of the GTP-binding proteins involved in the membrane localization of PLD activity was itself present in the membrane fraction. These data were consistent with a model in which activation of GTP-binding protein(s) resulted in the stable assembly of an active PLD signalling complex at the membrane surface.
机译:吞噬白细胞中磷脂酶D(PLD)的激活需要质膜和胞浆中都存在蛋白质成分,但是催化和调节因子尚未完全定义。我们已经表征了鸟苷5'-γ-硫代三磷酸(GTP [S])对PLD活性重建亚细胞需求的影响,使用了来自U937人原单核白细胞的无细胞系统。用100 microM GTP [S]孵育透化的细胞,导致膜定位的PLD活性独立于所添加的细胞质。来自GTP [S]处理的细胞的膜的PLD活性是对照膜的基础活性的7倍,并且可以通过添加ATP进一步增强。这是吞噬性白细胞膜中激动剂调节的PLD活性稳定的首次证明,该活性在数量上与完全重构的系统相当。来自GTP [S]处理的细胞的细胞溶胶支持PLD活化的能力降低,这与GTP [S]诱导的PLD活性重建所必需的因子耗尽有关。用GTP [S]孵育分离的膜和胞质液,还会在重新分离的膜中导致不依赖胞质液的PLD活性。鸟苷5'-βγ-亚氨基三磷酸可以模仿GTP [S]的作用,而氟化铝则不能,这与低分子GTP结合蛋白的参与一致。用GTP [S]孵育分离的亚细胞部分,然后去除未结合的核苷酸,这表明参与膜的PLD活性的至少一种GTP结合蛋白本身就存在于膜部分中。这些数据与其中GTP结合蛋白激活导致活性PLD信号复合物在膜表面稳定组装的模型一致。

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