首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Identification of autotaxin as a neurite retraction-inducing factor of PC12 cells in cerebrospinal fluid and its possible sources.
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Identification of autotaxin as a neurite retraction-inducing factor of PC12 cells in cerebrospinal fluid and its possible sources.

机译:鉴定自体紫杉醇作为脑脊液中PC12细胞的神经突回生诱导因子及其可能来源。

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摘要

Abstract Cerebrospinal fluid (CSF) induced neurite retraction of differentiated PC12 cells; the action was observed in 15 min (a rapid response) and the activity further increased until 6 h (a long-acting response) during exposure of CSF to the cells. The CSF action was sensitive to monoglyceride lipase and diminished by homologous desensitization with lysophosphatidic acid (LPA) and by pretreatment with an LPA receptor antagonist Ki16425. Although fresh CSF contains LPA to some extent, the LPA content in the medium was increased during culture of PC12 cells with CSF. The rapid response was mimicked by exogenous LPA, and a long-acting response was duplicated by a recombinant autotaxin, lysophospholipase D (lyso-PLD). Although the lyso-PLD substrate lysophosphatidylcholine (LPC) was not detected in CSF, lyso-PLD activity and an approximately 120-kDa autotaxin protein were detected in CSF. On the other hand, LPC but not lyso-PLD activity was detected in the conditioned medium of a PC12 cell culture without CSF. Among neural cells examined, leptomeningeal cells expressed the highest lyso-PLD activity and autotaxin protein. These results suggest that leptomeningeal cells may work as one of the sources for autotaxin, which may play a critical role in LPA production and thereby regulate axonal and neurite morphological change.
机译:摘要脑脊液(CSF)诱导分化的PC12细胞的神经突收缩。在CSF暴露于细胞的过程中,在15分钟内观察到了该作用(快速响应),并且活性进一步增加,直到6小时(长效响应)。脑脊液的作用对甘油单酯脂肪酶敏感,并通过与溶血磷脂酸(LPA)的同源脱敏以及通过LPA受体拮抗剂Ki16425的预处理而减弱。尽管新鲜的CSF在一定程度上含有LPA,但是在用CSF培养PC12细胞的过程中,培养基中LPA的含量增加了。快速反应被外源LPA模仿,长效反应被重组自身紫杉醇,溶血磷脂酶D(lyso-PLD)复制。尽管在CSF中未检测到溶血PLD底物溶血磷脂酰胆碱(LPC),但在CSF中检测到了溶血PLD活性和约120 kDa的自分泌蛋白。另一方面,在没有CSF的PC12细胞培养的条件培养基中检测到LPC,但未检测到溶菌PLD活性。在所检查的神经细胞中,软脑膜细胞表达最高的溶酶-PLD活性和自分泌蛋白。这些结果表明,软脑膜细胞可以作为自分泌紫杉醇的来源之一,这可能在LPA产生中起关键作用,从而调节轴突和神经突的形态变化。

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