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细胞信号传导对鸡视网膜神经元中GABA受体发育的影响。

Effects of cell signaling on the development of GABA receptors in chick retina neurons.

作者信息

Shah B H, Hausman R E

机构信息

Department of Biology, Boston University, MA 02215.

出版信息

Neurochem Res. 1993 Sep;18(9):957-64. doi: 10.1007/BF00966753.

Abstract

R-cognin, a cell recognition molecule, and insulin are known to play significant roles in GABAergic differentiation in the developing chick retina. In the present study, the effects of insulin and R-cognin on post-synaptic (GABAceptive) differentiation were investigated. In ovo binding of [3H]GABA and [3H]flunitrazepam ([3H]Flu) to the GABA and benzodiazepine (BZD) receptors, respectively, remained at low levels during early embryogenesis but increased sharply from mid-embryogenesis through hatching, increases which also occur in cultured neurons from early-embryonic (E7) and mid-embryonic (E11) chick retina. E7 neurons respond to insulin treatment (100 ng/ml) with increased [3H]Flu binding but no change in [3H]GABA binding. Cognin antibody (10 micrograms/ml) treatment of E7 neurons caused no significant inhibition of the developmental increases in binding of either radioligand. Insulin in E11 cultures led to greater developmental increases in binding sites for both radioligands, but exposure to cognin antibody was without significant effect. These data, along with previous studies, indicate that GABAergic differentiation in developing chick retina is regulated, in part, by insulin and cognin-mediated cell signaling. Insulin also regulates post-synaptic (GABAceptive) differentiation whereas cognin-mediated interactions are relatively insignificant.

摘要

R-认知素是一种细胞识别分子,已知其与胰岛素在雏鸡视网膜发育过程中的GABA能分化中发挥重要作用。在本研究中,研究了胰岛素和R-认知素对突触后(GABA感受性)分化的影响。在胚胎发育早期,[3H]GABA和[3H]氟硝西泮([3H]Flu)分别与GABA和苯二氮䓬(BZD)受体的卵内结合水平较低,但从胚胎中期到孵化期急剧增加,这种增加在来自胚胎早期(E7)和胚胎中期(E11)雏鸡视网膜的培养神经元中也会出现。E7神经元对胰岛素处理(100 ng/ml)的反应是[3H]Flu结合增加,但[3H]GABA结合无变化。用认知素抗体(10微克/毫升)处理E7神经元对两种放射性配体结合的发育性增加没有显著抑制作用。E11培养物中的胰岛素导致两种放射性配体结合位点的发育性增加更大,但暴露于认知素抗体则没有显著影响。这些数据以及先前的研究表明,雏鸡视网膜发育过程中的GABA能分化部分受胰岛素和认知素介导的细胞信号调节。胰岛素还调节突触后(GABA感受性)分化,而认知素介导的相互作用相对不显著。

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