Bartolome J V, Bartolome M B, Daltner L A, Evans C J, Barchas J D, Kuhn C M, Schanberg S M
Life Sci. 1986 Jun 23;38(25):2355-62. doi: 10.1016/0024-3205(86)90643-0.
Ornithine decarboxlyase (ODC) catalyzes the initial step in the bio-synthesis of the polyamines spermidine and spermine, which are key regulators of cell growth, proliferation and differentiation. Intracisternal administration of beta-endorphin (1 microgram) to 6 day-old rats markedly decreased brain, liver, heart and kidney ODC activity. Conversely, subcutaneous administration of beta-endorphin increased ODC activity in the heart and liver. Thus, ODC inhibition in peripheral organs in rat pups given beta-endorphin intracisternally appears to reflect central effects of this neuropeptide. Experiments were also carried out to test whether opioid receptors are involved in these tissue ODC responses. Naloxone prevented the decreases in brain ODC indicating the participation of opioid receptors in that process. In contrast, naloxone did not alter ODC responses in peripheral organs in rat pups given beta-endorphin intracisternally, indicating that these effects are independent of its classical opioid character. These results support the view that endogenous beta-endorphin may play an important role in organogenesis by modulating the growth-related enzyme ODC. The data also suggest that the regulation of peripheral organ development by beta-endorphin may be mediated through the release of growth regulatory substances from the CNS.
鸟氨酸脱羧酶(ODC)催化多胺亚精胺和精胺生物合成的起始步骤,多胺是细胞生长、增殖和分化的关键调节因子。给6日龄大鼠脑池内注射β-内啡肽(1微克)可显著降低脑、肝、心和肾的ODC活性。相反,皮下注射β-内啡肽可增加心脏和肝脏中的ODC活性。因此,脑池内给予β-内啡肽的幼鼠外周器官中的ODC抑制似乎反映了这种神经肽的中枢作用。还进行了实验以测试阿片受体是否参与这些组织ODC反应。纳洛酮可防止脑ODC的降低,表明阿片受体参与了该过程。相反,纳洛酮并未改变脑池内给予β-内啡肽的幼鼠外周器官中的ODC反应,表明这些作用与其经典的阿片特性无关。这些结果支持内源性β-内啡肽可能通过调节与生长相关的酶ODC在器官发生中起重要作用的观点。数据还表明,β-内啡肽对外周器官发育的调节可能是通过中枢神经系统释放生长调节物质来介导的。