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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Differential involvement of metabotropic and p75 neurotrophin receptors in effects of nerve growth factor and neurotrophin-3 on cultured Purkinje cell survival.
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Differential involvement of metabotropic and p75 neurotrophin receptors in effects of nerve growth factor and neurotrophin-3 on cultured Purkinje cell survival.

机译:代谢和p75神经营养因子受体在神经生长因子和Neurotrophin-3对培养的浦肯野细胞存活的影响中的差异参与。

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We have examined the role of the p75 neurotrophin receptor in survival-promoting effects of nerve growth factor (NGF) and neurotrophin-3 (NT-3) on cultured Purkinje cells. Previously, we showed that NGF promotes Purkinje cell survival in conjunction with (1S,3R)-1-aminocyclopentane-1,3-dicarboxylic acid (ACPD), an agonist of metabotropic excitatory amino acid receptors, whereas NT-3 by itself increases cell number. We now present evidence that p75 plays different roles in Purkinje cell responses to the two neurotrophins. A metabotropic receptor of the mGluR1 subtype may interact with p75 function, so as to regulate Purkinje cell responsiveness to neurotrophins. When cerebellar cultures were grown for 6 days in the presence of ACPD and a mutant form of NGF that does not bind to p75, no increase in Purkinje cell number was observed. Moreover, the survival-promoting effect of wild-type NGF and ACPD could be inhibited by a neutralizing antiserum to p75 or by a pyrazoloquinazolinone inhibitor of neurotrophin binding to p75. In contrast, the response to NT-3 was potentiated by anti-p75 treatment and by the quinazolinone. These data indicate the mediation of p75 in the trophic response to NGF-ACPD and a negative modulatory role of p75 in the action of NT-3. To probe the role of ACPD in the p75-dependent response to NGF, metabotropic receptor subtype-specific ligands were tested. The pattern of agonist specificity implicated the mGluR1 subtype, a receptor that is expressed at high levels by Purkinje cells and linked to activation of protein kinase C (PKC). Down-regulation or blockade of PKC abolished the response to NGF-ACPD. Consistent with the opposite roles of p75 in effects of the two neurotrophins, blockade of mGluR1 or PKC potentiated the survival response elicited by NT-3. In sum, our data suggest that afferent excitatory transmitters activate specific metabotropic receptors to elicit a p75-mediated action of NGF. NT-3 acts on Purkinje cells by a different mechanism that is not absolutely p75-dependent and that is reduced by neurotrophin access to p75 and metabotropic receptor activity.
机译:我们已经检查了神经生长因子(NGF)和神经营养蛋白3(NT-3)对培养的Purkinje细胞的存活促进作用中p75神经营养蛋白受体的作用。以前,我们表明NGF与(1S,3R)-1-氨基环戊烷-1,3-二羧酸(ACPD)一起代谢代谢型兴奋性氨基酸受体,可促进浦肯野细胞存活,而NT-3本身可增加细胞数。现在,我们提供证据表明p75在浦肯野细胞对两种神经营养蛋白的反应中起着不同的作用。 mGluR1亚型的代谢型受体可能与p75功能相互作用,从而调节浦肯野细胞对神经营养蛋白的反应性。当小脑培养物在ACPD和不结合p75的NGF突变体的存在下生长6天时,未观察到Purkinje细胞数增加。此外,通过对p75的中和性抗血清或神经营养蛋白与p75结合的吡唑并喹唑啉酮抑制剂可抑制野生型NGF和ACPD的存活促进作用。相反,通过抗p75治疗和喹唑啉酮增强了对NT-3的应答。这些数据表明p75在对NGF-ACPD的营养应答中的介导作用以及p75在NT-3作用中的负调节作用。为了探测ACPD在对NGF的p75依赖性应答中的作用,测试了代谢型受体亚型特异性配体。激动剂特异性模式涉及mGluR1亚型,该受体由Purkinje细胞高水平表达,并与蛋白激酶C(PKC)的激活有关。 PKC的下调或阻断消除了对NGF-ACPD的反应。与p75在两种神经营养蛋白作用中的相反作用相一致,对mGluR1或PKC的阻滞增强了NT-3引起的存活反应。总之,我们的数据表明传入的兴奋性递质激活特定的代谢型受体,以引起p75介导的NGF作用。 NT-3通过不同的机制作用于Purkinje细胞,该机制并非绝对p75依赖性,而神经营养蛋白对p75的代谢和代谢型受体的活性会降低。

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