Xu X J, Andell S, Bartfai T, Wiesenfeld-Hallin Z
Department of Medical Laboratory Sciences and Technology, Huddinge University Hospital, Karolinska Institute, Sweden.
Eur J Pharmacol. 1996 Dec 30;318(2-3):301-6. doi: 10.1016/s0014-2999(96)00814-x.
We have previously reported that galanin message-associated peptide (GMAP), a fragment of galanin precursor protein, is present in dorsal root ganglion cells and upon intrathecal (i.t.) administration influences the spinal nociceptive flexor reflex in a complex manner in the rat. GMAP elicited a moderate facilitation of the flexor reflex, but when administered prior to conditioning stimulation of C-afferents, it dose dependently blocked spinal cord hyperexcitability. The present study examined the effects of four fragments of GMAP-(1-60), GMAP-(1-12), GMAP-(10-24), GMAP-(25-44) and GMAP-(37-60), on the flexor reflex and compared them with the effects of the complete peptide sequence. All four GMAP fragments facilitated the flexor reflex. However, this effect was dose-dependent only for GMAP-(1-12) and the effect of GMAP-(1-12) was stronger than GMAP-(1-60). In contrast, only GMAP-(25-44) dose dependently blocked the facilitation of the flexor reflex induced by the C-fiber conditioning stimulation. The potency of the blocking effect of GMAP-(25-44) was one order of magnitude lower than that of GMAP-(1-60). The results indicated that two fragments of GMAP are pharmacologically active and produce effects which are similar to the full sequence. It is possible that the complex effect of GMAP may be mediated by different subtypes of GMAP receptors which recognize different portions of the GMAP sequence.
我们之前曾报道,甘丙肽信息相关肽(GMAP)是甘丙肽前体蛋白的一个片段,存在于背根神经节细胞中,鞘内注射时会以复杂方式影响大鼠的脊髓伤害性屈肌反射。GMAP引起屈肌反射适度增强,但在C类传入纤维条件刺激之前给药时,它会剂量依赖性地阻断脊髓的过度兴奋性。本研究检测了GMAP的四个片段——GMAP-(1-60)、GMAP-(1-12)、GMAP-(10-24)、GMAP-(25-44)和GMAP-(37-60)对屈肌反射的影响,并将其与完整肽序列的作用进行比较。所有四个GMAP片段均增强了屈肌反射。然而,只有GMAP-(1-12)的这种作用呈剂量依赖性,且GMAP-(1-12)的作用强于GMAP-(1-60)。相反,只有GMAP-(25-44)剂量依赖性地阻断了C纤维条件刺激诱导的屈肌反射增强。GMAP-(25-44)的阻断作用效力比GMAP-(1-60)低一个数量级。结果表明,GMAP的两个片段具有药理活性,且产生的作用与完整序列相似。GMAP的复杂作用可能由识别GMAP序列不同部分的不同亚型GMAP受体介导。