Villeneuve P, Lafortune L, Seidah N G, Kitabgi P, Beaudet A
Montreal Neurological Institute, McGill University, Montreal, Quebec H3A 2B4, Canada.
J Comp Neurol. 2000 Aug 28;424(3):461-75. doi: 10.1002/1096-9861(20000828)424:3<461::aid-cne5>3.0.co;2-j.
The neuropeptides/neurotransmitters neurotensin (NT) and neuromedin (NN) are synthesized by endoproteolytic cleavage of a common inactive precursor, pro-NT/NN. In vitro studies have suggested that the prohormone convertases PC5A and PC2 might both be involved in this process. In the present study, we used dual immunohistochemical techniques to determine whether either one or both of these two convertases were co-localized with pro-NT/NN maturation products and could therefore be involved in the physiological processing of this propeptide in rat brain. PC2-immunoreactive neurons were present in all regions immunopositive for NT. All but three regions expressing NT were also immunopositive for PC5A. Dual localization of NT with either convertase revealed that NT was extensively co-localized with both PC5A and PC2, albeit with regional differences. These results strongly suggest that PC5A and PC2 may play a key role in the maturation of pro-NT/NN in mammalian brain. The regional variability in NT/PC co-localization patterns may account for the region-specific maturation profiles previously reported for pro-NT/NN. The high degree of overlap between PC5A and PC2 in most NT-rich areas further suggests that these two convertases may act jointly to process pro-NT/NN. At the subcellular level, PC5A was largely co-localized with the mid-cisternae Golgi marker MG-160. By contrast, PC2 was almost completely excluded from MG-160-immunoreactive compartments. These results suggest that PC5A, which is particularly efficient at cleaving the two C-terminal-most dibasics of pro-NT/NN, may be acting as early as in the Golgi apparatus to release NT, whereas PC2, which is considerably more active than PC5A in cleaving the third C-terminal doublet, may be predominantly involved further distally along the secretory pathway to release NN.
神经肽/神经递质神经降压素(NT)和神经介素(NN)是由共同的无活性前体前NT/NN经内蛋白水解切割而合成的。体外研究表明,激素原转化酶PC5A和PC2可能都参与了这一过程。在本研究中,我们使用双重免疫组织化学技术来确定这两种转化酶中的一种或两种是否与前NT/NN成熟产物共定位,因此可能参与该前体肽在大鼠脑中的生理加工过程。在所有对NT呈免疫阳性的区域都存在PC2免疫反应性神经元。除了三个表达NT的区域外,所有表达NT的区域对PC5A也呈免疫阳性。NT与任一转化酶的双重定位显示,NT与PC5A和PC2都广泛共定位,尽管存在区域差异。这些结果强烈表明,PC5A和PC2可能在哺乳动物脑中前NT/NN的成熟过程中起关键作用。NT/PC共定位模式的区域变异性可能解释了先前报道的前NT/NN的区域特异性成熟情况。在大多数富含NT的区域中,PC5A和PC2的高度重叠进一步表明,这两种转化酶可能共同作用来加工前NT/NN。在亚细胞水平上,PC5A主要与高尔基中间膜囊标记物MG-160共定位。相比之下,PC2几乎完全被排除在MG-160免疫反应性区室之外。这些结果表明,PC5A在切割前NT/NN最末端的两个双碱性氨基酸方面特别有效,可能早在高尔基体中就发挥作用来释放NT,而PC2在切割第三个C末端双联体方面比PC5A活跃得多,可能主要在分泌途径更远端参与释放NN。