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Neutrophil neutral endopeptidase variation and its regulation by opioid peptides.

机译:中性粒细胞中性内肽酶变异及其受阿片肽的调节。

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摘要

The opioid peptide methionine-enkephalin (MENK) has significant immunomodulatory ability in addition to its neurotransmitter function. Since neutral endopeptidase (NEP, CD10, enkephalinase EC 3.4.24.11) cleaves opioid peptides, the presence and activity of NEP in neutrophils from different persons might be responsible for the diverse, neuropeptide-induced, responses of neutrophils from different donors [Ann. N. Y. Acad. Sci. 650 (1992) 146]. The results obtained showed statistically significant differences in NEP activity among donors (high, medium and low). A 10-fold higher NEP activity in neutrophils (160-280 nmol/10(6) cells/h) and in their corresponding membrane preparations (550 nmol/mg protein/min) in our study, as compared to literature data, was a result of high specificity and affinity of Suc-Ala-Ala-Phe-pNA as substrate. In control nontreated neutrophils, the number of CD10 positive cells were not correlated with NEP activity. However, in neutrophils treated with a physiological (10(-10) M) concentration of MENK, two main events occurred; not only did the number of CD10 positive cells correlate with NEP activity, but contrary to control samples, MENK upregulated the expression of CD10 marker as demonstrated by an increase of mean florescence intensity (F-mean) in donors with low NEP activity. Taken together, these data add some clarity to the diverse activity of enkephalins in association with enzyme cleavage of those molecules.
机译:阿片肽甲硫氨酸脑啡肽(MENK)除具有神经递质功能外,还具有重要的免疫调节能力。由于中性内肽酶(NEP,CD10,脑啡肽酶EC 3.4.24.11)会裂解阿片样肽,因此,来自不同人的中性粒细胞中NEP的存在和活性可能是来自不同供体的中性粒细胞的多种神经肽诱导的反应[Ann。 N. Y. Acad。科学650(1992)146]。获得的结果表明,供体之间(高,中和低)NEP活性在统计学上有显着差异。与文献数据相比,我们研究中的中性粒细胞(160-280 nmol / 10(6)细胞/ h)及其相应的膜制剂(550 nmol / mg蛋白质/ min)的NEP活性高10倍Suc-Ala-Ala-Phe-pNA作为底物的高特异性和亲和力的结果。在未处理的对照中性粒细胞中,CD10阳性细胞的数量与NEP活性无关。但是,在以生理(10(-10)M)浓度的MENK处理的嗜中性粒细胞中,发生了两个主要事件。不仅CD10阳性细胞的数量与NEP活性相关,而且与对照样品相反,MENK上调了CD10标志物的表达,这由NEP活性低的供体的平均荧光强度(F-mean)的增加所证明。综上所述,这些数据为脑啡肽的多种活性与这些分子的酶裂解相关提供了一定的清晰度。

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