Vogt R G, Rybczynski R, Cruz M, Lerner M R
Department of Biological Sciences, University of South Carolina, Columbia 29208.
J Neurobiol. 1993 May;24(5):581-97. doi: 10.1002/neu.480240505.
During adult metamorphosis, the moth olfactory neurons and their glia-like support cells pass through a coordinated and synchronous development. By 60% of development, the olfactory system is anatomically complete, but functional maturation does not occur until about 90% of development. Maturation is characterized by the onset of odorant sensitivity in the sensory neurons and the expression of certain antennal-specific proteins including odorant binding proteins (OBPs) and odorant degrading enzymes (ODEs). The OBPs have been cloned and sequenced, and are thus useful models for investigating the molecular mechanisms coordinating final maturation of the developing olfactory system. The ecdysteroid hormones have been observed to regulate many cellular level neuronal changes during adult metamorphosis. In particular, the late pupal decline in ecdysteroids is known to influence programmed death of nerves and muscles at the end of metamorphosis. Experiments are presented here which indicate that this decline in ecdysteroids also induces the expression of the OBPs. Normal OBP expression occurs 35-40 h before adult emergence. In culture, OBP expression could be induced at least 90 h before adult emergence by the premature removal of ecdysteroid. This premature expression was blocked by culturing tissue in the presence of the biologically active ecdysteroid 20-hydroxyecdysone. These findings suggest that maturation of the olfactory system is regulated by the decline in ecdysteroids, and support the view that olfactory development, in general, may be coordinated by changing levels of pupal ecdysteroids.
在成虫变态发育过程中,蛾类嗅觉神经元及其胶质样支持细胞经历协调且同步的发育。发育至60%时,嗅觉系统在解剖学上已完整,但功能成熟直到发育约90%时才会发生。成熟的特征是感觉神经元中气味敏感性的开始以及某些触角特异性蛋白质的表达,包括气味结合蛋白(OBP)和气味降解酶(ODE)。OBP已被克隆和测序,因此是研究协调发育中嗅觉系统最终成熟的分子机制的有用模型。已观察到蜕皮甾体激素在成虫变态发育过程中调节许多细胞水平的神经元变化。特别是,已知蛹后期蜕皮甾体激素的下降会影响变态末期神经和肌肉的程序性死亡。本文展示的实验表明,这种蜕皮甾体激素的下降也会诱导OBP的表达。正常的OBP表达在成虫羽化前35 - 40小时出现。在培养中,通过提前去除蜕皮甾体激素,OBP表达可在成虫羽化前至少90小时被诱导。这种提前表达在有生物活性的蜕皮甾体激素20 - 羟基蜕皮酮存在的情况下培养组织时被阻断。这些发现表明嗅觉系统的成熟受蜕皮甾体激素下降的调节,并支持这样一种观点,即一般来说,嗅觉发育可能由蛹期蜕皮甾体激素水平的变化来协调。