Nakata Y, Kusaka Y, Yajima H, Segawa T
J Neurochem. 1981 Dec;37(6):1529-34. doi: 10.1111/j.1471-4159.1981.tb06323.x.
We previously reported that nerve terminals and glial cells lack an active uptake system capable of terminating transmitter action of substance P (SP). In the present study, we demonstrated the existence of an active uptake system for SP carboxy-terminal heptapeptide, (5-11)SP. When the slices from either rat brain or rabbit spinal cord were incubated with 3HSP, the uptake of (5-11)SP into slices was observed. The uptake system has the properties of an active transport mechanism: it is dependent on temperature and sensitive to hypoosmotic treatment and is inhibited by ouabain and dinitrophenol (DNP). In the brain, (5-11)SP was accumulated by means of a high-affinity and a low-affinity uptake system. The Km and the Vmax values for the high-affinity system were 4.20 x 10(-8) M and 7.59 fmol/10 mg wet weight/min, respectively, whereas these values for the low-affinity system were 1.00 x 10(-6) M and 100 fmol/10 mg wet weight/min, respectively. In the spinal cord, there was only one uptake system, with a Km value of 2.16 x 10(-7) M and Vmax value of 26.2 fmol/10 mg wet weight/min. These results suggest that when SP is released from nerve terminals, it is hydrolysed into (5-11)SP before or after acting as a neurotransmitter, which is in turn accumulated into nerve terminals. Therefore, the uptake system may represent a possible mechanism for the inactivation of SP.
我们之前报道过,神经末梢和神经胶质细胞缺乏能够终止P物质(SP)递质作用的主动摄取系统。在本研究中,我们证明了存在一种针对SP羧基末端七肽,即(5-11)SP的主动摄取系统。当用3HSP孵育大鼠脑或兔脊髓切片时,观察到(5-11)SP被摄取到切片中。该摄取系统具有主动转运机制的特性:它依赖于温度,对低渗处理敏感,并被哇巴因和二硝基苯酚(DNP)抑制。在脑中,(5-11)SP通过高亲和力和低亲和力摄取系统进行积累。高亲和力系统的Km和Vmax值分别为4.20×10(-8)M和7.59fmol/10mg湿重/分钟,而低亲和力系统的这些值分别为1.00×10(-6)M和100fmol/10mg湿重/分钟。在脊髓中,只有一个摄取系统,Km值为2.16×10(-7)M,Vmax值为26.2fmol/10mg湿重/分钟。这些结果表明,当SP从神经末梢释放时,它在作为神经递质之前或之后被水解成(5-11)SP,然后(5-11)SP又被积累到神经末梢中。因此,该摄取系统可能是SP失活的一种可能机制。