Germanà A, del Valle M E, Laurà R, Ciriaco E, Vega J A, Germanà G
Department of Morphology, Biochemistry, Physiology and Animal Production, Section of Morphology, University of Messina, Messina, Italy.
Ital J Anat Embryol. 2005;110(2 Suppl 1):37-47.
Neurocalcin (NC) is a neuron-specific "EF-hand" calcium-binding protein present in a non-fully characterized subpopulation of dorsal root ganglion (DRG) neurons, some kinds of mechanoreceptors and proprioceptors, and in motor end-plates. In the present study we have characterized NC expression in spinal sensory and motor neurons, and their endings in newborn mouse. Because the neurotrophic factor neurotrophin-3 (NT-3) appears to plays a major role in the development and maturation of sensory and motor neuronal populations, we have studied NC immunoreactivity in newborn NT-3 null mutant. In NT-3 deficient animals the overall number of NC-immunoreactive DRG neurons was reduced by as much as 70% including all large neurons, but subpopulations of NC expressing small and intermediate-sized neurons survived. As expected no muscle spindles were found in NT-3 mutant mice while they were present and normally innervated by NC-positive nerve fibers in wild-type animals. On the other hand, NC immunoreactivity was dramatically decreased in motoneurons of the spinal cord, ventral root nerves and motor end-plates in the absence of NT-3. The present results demonstrate that NC-containing DRG neurons include all proprioceptive, and a subset of mechanoreceptive and proprioceptive. Furthermore, they strongly suggest that NT-3 is involved in the maturation of motor end-plates.
神经钙蛋白(NC)是一种神经元特异性的“EF手型”钙结合蛋白,存在于背根神经节(DRG)神经元、某些类型的机械感受器和本体感受器以及运动终板的一个尚未完全明确的亚群中。在本研究中,我们对新生小鼠脊髓感觉神经元和运动神经元及其终末中的NC表达进行了特征描述。由于神经营养因子神经生长因子-3(NT-3)似乎在感觉和运动神经元群体的发育和成熟中起主要作用,我们研究了新生NT-3基因敲除小鼠中的NC免疫反应性。在NT-3缺陷动物中,NC免疫反应性DRG神经元的总数减少了多达70%,包括所有大神经元,但表达NC的小神经元和中等大小神经元亚群存活了下来。正如预期的那样,在NT-3突变小鼠中未发现肌梭,而在野生型动物中肌梭存在且由NC阳性神经纤维正常支配。另一方面,在没有NT-3的情况下,脊髓运动神经元、腹根神经和运动终板中的NC免疫反应性显著降低。目前的结果表明,含有NC的DRG神经元包括所有本体感受神经元,以及一部分机械感受和本体感受神经元。此外,这些结果强烈表明NT-3参与了运动终板的成熟过程。