Mammalian zinc ectopeptidases play important roles in turning off neural and hormonal peptide signals at the cell surface, notably those processing sensory information. We report here the discovery of a previously uncharacterized physiological inhibitor of enkephalin-inactivating zinc ectopeptidases in humans, which we have named Opiorphin. It is a QRFSR peptide that inhibits two enkephalin-catabolizing ectoenzymes, human neutral ecto-endopeptidase, hNEP (EC 3.4.24.11), and human ecto-aminopeptidase, hAP-N (EC 3.4.11.2). Opiorphin displays potent analgesic activity in chemical and mechanical pain models by activating endogenous opioid-dependent transmission. Its function is closely related to the rat sialorphin peptide, which is an inhibitor of pain perception and acts by potentiating endogenous mu- and delta-opioid receptor-dependent enkephalinergic pathways. Here we demonstrate the functional specificity in vivo of human Opiorphin. The pain-suppressive potency of Opiorphin is as effective as morphine in the behavioral rat model of acute mechanical pain, the pin-pain test. Thus, our discovery of Opiorphin is extremely exciting from a physiological point of view in the context of endogenous opioidergic pathways, notably in modulating mood-related states and pain sensation. Furthermore, because of its in vivo properties, Opiorphin may have therapeutic implications.

译文

哺乳动物锌外肽酶在关闭细胞表面的神经和激素肽信号中起重要作用,尤其是那些处理感觉信息的信号。我们在这里报告了在人类中发现了一种以前未表征的脑啡肽失活锌外肽酶的生理抑制剂,我们将其命名为Opiorphin。它是一种QRFSR肽,可抑制两种脑啡肽分解代谢的外胚酶,人中性外胚肽内肽酶hNEP (EC 3.4.24.11) 和人外胚肽氨基肽酶hAP-N (EC 3.4.11.2)。Opiorphin通过激活内源性阿片样物质依赖性传递在化学和机械疼痛模型中显示出有效的镇痛活性。其功能与大鼠唾液酸肽密切相关,唾液酸肽是一种疼痛感的抑制剂,可通过增强内源性mu和 δ 阿片受体依赖性脑啡肽途径发挥作用。在这里,我们证明了人Opiorphin在体内的功能特异性。在急性机械性疼痛的行为大鼠模型 (pin-pain测试) 中,Opiorphin的疼痛抑制作用与吗啡一样有效。因此,从生理学的角度来看,在内源性阿片样肽途径的背景下,特别是在调节情绪相关状态和疼痛感方面,我们对阿片样肽的发现非常令人兴奋。此外,由于其体内特性,Opiorphin可能具有治疗意义。

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