首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Okadaic acid and cultured frog sciatic nerves: potent inhibition of axonal regeneration in spite of unaffected Schwann cell proliferation and ganglionic protein synthesis.
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Okadaic acid and cultured frog sciatic nerves: potent inhibition of axonal regeneration in spite of unaffected Schwann cell proliferation and ganglionic protein synthesis.

机译:冈田酸和培养的青蛙坐骨神经:尽管不影响雪旺氏细胞的增殖和神经节蛋白的合成,但有效抑制轴突再生。

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摘要

Okadaic acid (OA) is a frequently used phosphatase inhibitor that by inhibiting dephosphorylation increases the net phosphorylation level in various systems. In the present study OA was used to assess the role of balanced phosphorylation-dephosphorylation reactions for successful regeneration of peripheral nerves. To achieve this, the effects of OA on phosphorylation levels, neurite outgrowth, injury-induced support cell proliferation, and neurofilament stability, respectively, were investigated in the in vitro regenerating, adult frog sciatic sensory nerve. OA at a moderate concentration (20 nM) increased phosphorylation levels and almost completely inhibited the in vitro regeneration in a reversible way. The effect on regeneration was not due to induced neurofilament instability and was only seen when the drug was applied in the outgrowth region. The latter and the absence of effects on support cell proliferation indicate that OA acts locally at the level of newly formed axons. However, the inhibition of regeneration was not a consequence of reduced delivery of proteins by axonal transport, because this process in fact was increased by OA. Altogether, the study suggests that properly balanced phosphorylating-dephosphorylating reactions are critical for regeneration of peripheral nerves.
机译:冈田酸(OA)是一种常用的磷酸酶抑制剂,可通过抑制去磷酸化来增加各种系统中的净磷酸化水平。在本研究中,OA被用于评估平衡的磷酸化-去磷酸化反应对周围神经成功再生的作用。为了达到这个目的,分别在体外再生的成年青蛙坐骨神经感觉神经中研究了OA对磷酸化水平,神经突向外生长,损伤诱导的支持细胞增殖和神经丝稳定性的影响。中度浓度(20 nM)的OA增加了磷酸化水平,并以可逆的方式几乎完全抑制了体外再生。对再生的影响不是由于诱导的神经丝不稳定性引起的,只有在将药物应用于生长区域时才能看到。后者和对支持细胞增殖的影响不存在表明OA在新形成的轴突水平上局部起作用。然而,再生的抑制不是轴突运输减少蛋白质递送的结果,因为事实上该过程因OA而增加。总之,该研究表明适当平衡的磷酸化-去磷酸化反应对于周围神经的再生至关重要。

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