Fonta Caroline, Negyessy Laszlo, Renaud Luc, Barone Pascal
Cerveau et Cognition, Centre National de la Recherche Scientifique-Université Paul Sabatier UMR5549, Faculté de Médecine Rangueil, 31062 Toulouse Cedex, France.
J Comp Neurol. 2005 May 30;486(2):179-96. doi: 10.1002/cne.20524.
We have shown previously that the tissue nonspecific alkaline phosphatase (TNAP) is selectively expressed in the synaptic cleft of sensory cortical areas in adult mammals and, by using sensory deprivation, that TNAP activity depends on thalamocortical activity. We further analyzed this structural functional relationship by comparing the developmental pattern of TNAP activity to the maturation of the thalamocortical afferents in the primate brain (Callithrix jacchus). Cortical expression of alkaline phosphatase (AP) activity reflects the sequential maturation of the modality-specific sensory areas. Within the visual cortex, the regional and laminar distribution of AP correlates with the differential maturation of the magno- and parvocellular streams. AP activity, which is transiently expressed in the white matter, exhibits a complementary distributional pattern with myelin staining. Ultrastructural analysis revealed that AP activity is localized exclusively to the myelin-free axonal segments, including the node of Ranvier. It was also found that AP activity is gradually expressed in parallel with the maturation of synaptic contacts in the neuropile. These data suggest the involvement of AP, in addition to neurotransmitter synthesis previously suggested in the adult, in synaptic stabilization and in myelin pattern formation and put forward a role of AP in cortical plasticity and brain disorders.
我们之前已经表明,组织非特异性碱性磷酸酶(TNAP)在成年哺乳动物感觉皮质区域的突触间隙中选择性表达,并且通过感觉剥夺发现,TNAP活性依赖于丘脑皮质活动。我们通过比较TNAP活性的发育模式与灵长类动物大脑(狨猴)中丘脑皮质传入纤维的成熟情况,进一步分析了这种结构功能关系。碱性磷酸酶(AP)活性的皮质表达反映了模式特异性感觉区域的顺序成熟。在视觉皮质内,AP的区域和层状分布与大细胞和小细胞流的不同成熟相关。在白质中短暂表达的AP活性呈现出与髓鞘染色互补的分布模式。超微结构分析表明,AP活性仅定位于无髓鞘的轴突段,包括郎飞结。还发现AP活性与神经毡中突触接触的成熟同时逐渐表达。这些数据表明,除了先前在成体中提出的神经递质合成外,AP还参与突触稳定以及髓鞘模式形成,并提出了AP在皮质可塑性和脑部疾病中的作用。