Banks W A, Kastin A J, Michals E A, Barrera C M
Veterans Affairs Medical Center, New Orleans, LA.
Brain Res Bull. 1990 Oct;25(4):589-92. doi: 10.1016/0361-9230(90)90116-h.
Previous studies have suggested that peptide transport system-1 (PTS-1), the saturable system that transports Tyr-MIF-1, the enkephalins, and related peptides out of the central nervous system (CNS), exhibits stereospecificity. In the present studies, we showed that 125I-L-Tyr-MIF-1, but not 131I-D-Tyr-MIF-1, was cleared from the CNS more rapidly than could be accounted for by nonspecific mechanisms. Such clearance was inhibited by a 1.0 nmol dose of L-Tyr-MIF-1, but not by D-Tyr-MIF-1. Neither L- nor D-Tyr-MIF-1 altered the much lower clearance of I-D-Tyr-MIF-1 from the brain. Radioactivity recovered from the vascular space after the injection of 125I-Tyr-MIF-1 into the lateral ventricle of the brain eluted by HPLC primarily as intact peptide, demonstrating that most of the Tyr-MIF-1 was not degraded during transport. By contrast, the nonsaturable unidirectional influx of Tyr-MIF-1 into the CNS did not distinguish between the isomers. These studies confirm and extend the observations that Tyr-MIF-1 is transported out of the CNS by a saturable, stereospecific transport system as an intact peptide while the influx into the CNS is by a nonsaturable mechanism that does not distinguish between the isomers.
先前的研究表明,肽转运系统-1(PTS-1)是一种可饱和的系统,它将酪酪肽-促黑素细胞激素-1(Tyr-MIF-1)、脑啡肽及相关肽转运出中枢神经系统(CNS),具有立体特异性。在本研究中,我们发现,125I-L-Tyr-MIF-1从CNS清除的速度比非特异性机制所能解释的要快,而131I-D-Tyr-MIF-1则不然。这种清除受到1.0 nmol剂量的L-Tyr-MIF-1抑制,但不受D-Tyr-MIF-1抑制。L-Tyr-MIF-1和D-Tyr-MIF-1均未改变I-D-Tyr-MIF-1从脑中低得多的清除率。将125I-Tyr-MIF-1注入脑侧脑室后,从血管腔回收的放射性物质经高效液相色谱(HPLC)洗脱主要为完整肽,表明大多数Tyr-MIF-1在转运过程中未被降解。相比之下,Tyr-MIF-1向CNS的非饱和单向流入对异构体没有区分。这些研究证实并扩展了以下观察结果:Tyr-MIF-1作为完整肽通过可饱和的、立体特异性转运系统转运出CNS,而进入CNS则是通过不区分异构体的非饱和机制。