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首页> 外文期刊>The European Journal of Neuroscience >Developmental changes of CaMKII localization, activity and function during postembryonic CNS remodelling in Manduca sexta.
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Developmental changes of CaMKII localization, activity and function during postembryonic CNS remodelling in Manduca sexta.

机译:生殖器官中枢神经系统重塑过程中CaMKII定位,活性和功能的发育变化。

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摘要

Insect metamorphosis is a compelling example of postembryonic remodelling of neuronal structure and synaptic connectivity as larval and adult behaviours place distinct demands on the CNS. Holometabolous insects such as the moth Manduca sexta have long served as suitable models for the study of steroid effects on CNS remodelling, but activity and calcium-dependent mechanisms have been found to act in concert with hormonal signals. This study examines developmental changes in the localization and the activational state of CaMKII during postembryonic Manduca CNS remodelling. Western blotting, CaMKII purification and autophosphorylation with gamma(32)P-ATP indicate that the lepidopteran CNS may contain only one CaMKII isoform. In situ immunohistochemistry reveals developmental changes in the expression patterns of CaMKII in different types of thoracic neurons and in different neuronal compartments. Early pupal life is characterized by an increase in postsynaptic CaMKII localization, which coincides with a developmental increase in CaMKII activation. Both events correlate temporally with motoneuron dendritic filopodia collapse and rapid synaptogenesis, indicating a possible functional role for CaMKII for the postembryonic development of invertebrate motor circuitry. Substrate phosphorylation assays demonstrate that CaMKII activity in the ventral nerve cord reflects changes in calcium influx through voltage-activated channels as occurring in vivo during normal development.
机译:由于幼虫和成年行为对中枢神经系统有不同的要求,因此,昆虫变态是胚胎后神经元结构和突触连接性重塑的一个令人信服的例子。长期以来,诸如蛾蛾(Manduca sexta)之类的全代谢昆虫长期以来一直是研究类固醇对中枢神经系统重塑作用的合适模型,但已发现活性和钙依赖性机制与激素信号协同作用。这项研究检查了胚胎后Manduca中枢神经系统重塑过程中CaMKII的定位和激活状态的发展变化。 Western印迹,CaMKII纯化和与gamma(32)P-ATP的自磷酸化表明,鳞翅目中枢神经系统可能只包含一种CaMKII亚型。原位免疫组织化学揭示了CaMKII在不同类型的胸神经元和不同神经元区室的表达模式的发展变化。幼仔的早期生活特征是突触后CaMKII定位的增加,这与CaMKII激活的发展增加相吻合。这两个事件在时间上与运动神经元树突状丝状伪足塌陷和快速突触发生相关,表明CaMKII可能在无脊椎动物运动电路的胚胎后发育中发挥功能作用。底物磷酸化分析表明,腹侧神经索中的CaMKII活性反映了正常发育期间体内发生的通过电压激活通道的钙内流变化。

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