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在发育过程中,钙/钙调蛋白依赖性蛋白激酶 II 的组成性激活会损害果蝇逃避行为相关回路中的中枢胆碱能传递。

Constitutive activation of Ca2+/calmodulin-dependent protein kinase II during development impairs central cholinergic transmission in a circuit underlying escape behavior in Drosophila.

机构信息

Laboratory of Experimental Physiology, Medical School, University of Athens, 11527 Athens, Greece.

出版信息

J Neurosci. 2012 Jan 4;32(1):170-82. doi: 10.1523/JNEUROSCI.6583-10.2012.

Abstract

Development of neural circuitry relies on precise matching between correct synaptic partners and appropriate synaptic strength tuning. Adaptive developmental adjustments may emerge from activity and calcium-dependent mechanisms. Calcium/calmodulin-dependent protein kinase II (CaMKII) has been associated with developmental synaptic plasticity, but its varied roles in different synapses and developmental stages make mechanistic generalizations difficult. In contrast, we focused on synaptic development roles of CaMKII in a defined sensory-motor circuit. Thus, different forms of CaMKII were expressed with UAS-Gal4 in distinct components of the giant fiber system, the escape circuit of Drosophila, consisting of photoreceptors, interneurons, motoneurons, and muscles. The results demonstrate that the constitutively active CaMKII-T287D impairs development of cholinergic synapses in giant fiber dendrites and thoracic motoneurons, preventing light-induced escape behavior. The locus of the defects is postsynaptic as demonstrated by selective expression of transgenes in distinct components of the circuit. Furthermore, defects among these cholinergic synapses varied in severity, while the glutamatergic neuromuscular junctions appeared unaffected, demonstrating differential effects of CaMKII misregulation on distinct synapses of the same circuit. Limiting transgene expression to adult circuits had no effects, supporting the role of misregulated kinase activity in the development of the system rather than in acutely mediating escape responses. Overexpression of wild-type transgenes did not affect circuit development and function, suggesting but not proving that the CaMKII-T287D effects are not due to ectopic expression. Therefore, regulated CaMKII autophosphorylation appears essential in central synapse development, and particular cholinergic synapses are affected differentially, although they operate via the same nicotinic receptor.

摘要

神经回路的发育依赖于正确的突触伙伴之间的精确匹配和适当的突触强度调节。适应性发育调整可能来自于活动和钙依赖性机制。钙/钙调蛋白依赖性蛋白激酶 II(CaMKII)与发育性突触可塑性有关,但它在不同突触和发育阶段的多种作用使得机制概括变得困难。相比之下,我们专注于 CaMKII 在一个定义明确的感觉运动回路中的突触发育作用。因此,不同形式的 CaMKII 与 UAS-Gal4 一起在果蝇逃避回路的巨大纤维系统的不同组成部分中表达,该系统由光感受器、中间神经元、运动神经元和肌肉组成。结果表明,组成型活性 CaMKII-T287D 损害了巨大纤维树突和胸运动神经元中胆碱能突触的发育,从而阻止了光诱导的逃避行为。缺陷的位置是突触后,因为在电路的不同组成部分中选择性表达转基因证明了这一点。此外,这些胆碱能突触之间的缺陷在严重程度上有所不同,而谷氨酸能神经肌肉接头似乎没有受到影响,表明 CaMKII 失调对同一电路中不同突触的影响不同。将转基因表达限制在成年回路中没有影响,支持了激酶活性失调在系统发育中的作用,而不是在急性介导逃避反应中的作用。野生型转基因的过表达不会影响电路的发育和功能,这表明但不能证明 CaMKII-T287D 的影响不是由于异位表达。因此,调节 CaMKII 自身磷酸化似乎对中枢突触发育至关重要,尽管它们通过相同的烟碱型受体起作用,但特定的胆碱能突触受到不同的影响。

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