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斑马鱼中强啡肽A的鉴定:与哺乳动物强啡肽A的比较研究。

Identification of dynorphin a from zebrafish: a comparative study with mammalian dynorphin A.

作者信息

Gonzalez-Nuñez V, Marrón Fernández de Velasco E, Arsequell G, Valencia G, Rodríguez R E

机构信息

Department of Biochemistry and Molecular Biology, Faculty of Medicine, University of Salamanca, Avda Alfonso X El Sabio, s/n 37007 Salamanca, Spain.

出版信息

Neuroscience. 2007 Jan 19;144(2):675-84. doi: 10.1016/j.neuroscience.2006.09.028. Epub 2006 Oct 25.

Abstract

We report the cloning and molecular characterization of the zfPDYN. The complete open reading frame for this propeptide is comprised in two exons that are localized on chromosome 23. zfPDYN cDNA codes for a polypeptide of 252 amino acids that contains the consensus sequences for four opioid peptides: an Ile-enkephalin, the neo-endorphins, dynorphin A and dynorphin B. Upon comparison between zebrafish (zfDYN A) and mammalian dynorphin A (mDYN A) it has been stated that these two peptides only differ in two amino acids: the Leu(5) is replaced by Met(5) and the Lys(13) by Arg(13). Taking into consideration that mDYN A is able to bind to the three mammalian opioid receptors, we have compared the pharmacological profile of zfDYN A and mDYN A on the zebrafish opioid receptors. By means of radioligand binding techniques, we have established that these two dynorphins bind and activate all of the cloned opioid receptors from zebrafish (delta-, mu- and kappa-like), although with different affinities. zfDYN A and mDYN A displace [(3)H]-diprenorphine binding with K(i) values on the nanomolar range, showing greater affinity for zebrafish opioid receptor (ZFOR) 3 (kappa) receptor. ZFOR1 (delta) and ZFOR4 (delta) present higher affinity for zfDYN A than for mDYN A, while the opposing behavior is observed in ZFOR2 (mu). Functional [(35)S]guanosine 5'-[gamma-thio]triphosphate (GTPgammaS) stimulation experiments indicate that these two peptides fully activate the zebrafish opioid receptors, although the mean effective dose (EC(50)) values obtained for ZFOR2 and ZFOR3 receptors are lower than those seen for ZFOR1 and ZFOR4. A comparative study indicates that mammalian and zebrafish opioid receptors might bind their corresponding dynorphin A in a similar fashion, hence suggesting an important role of the opioid system through the vertebrate evolution.

摘要

我们报告了zfPDYN的克隆及分子特征。该前体肽的完整开放阅读框包含在位于23号染色体上的两个外显子中。zfPDYN cDNA编码一个由252个氨基酸组成的多肽,其包含四种阿片肽的共有序列:异亮氨酸脑啡肽、新内啡肽、强啡肽A和强啡肽B。通过比较斑马鱼强啡肽A(zfDYN A)和哺乳动物强啡肽A(mDYN A),发现这两种肽仅在两个氨基酸上存在差异:亮氨酸(5位)被甲硫氨酸(5位)取代,赖氨酸(13位)被精氨酸(13位)取代。鉴于mDYN A能够与三种哺乳动物阿片受体结合,我们比较了zfDYN A和mDYN A对斑马鱼阿片受体的药理学特性。通过放射性配体结合技术,我们确定这两种强啡肽能够结合并激活斑马鱼所有克隆的阿片受体(δ、μ和κ样受体),尽管亲和力不同。zfDYN A和mDYN A以纳摩尔范围内的K(i)值取代[³H] - 二丙诺啡结合,对斑马鱼阿片受体(ZFOR)3(κ)受体显示出更高的亲和力。ZFOR1(δ)和ZFOR4(δ)对zfDYN A的亲和力高于对mDYN A的亲和力,而在ZFOR2(μ)中观察到相反的情况。功能性[³⁵S]鸟苷5'-[γ-硫代]三磷酸(GTPγS)刺激实验表明,这两种肽能够完全激活斑马鱼阿片受体,尽管ZFOR2和ZFOR3受体获得的平均有效剂量(EC(50))值低于ZFOR1和ZFOR4。一项比较研究表明,哺乳动物和斑马鱼的阿片受体可能以类似方式结合其相应的强啡肽A,因此表明阿片系统在脊椎动物进化过程中具有重要作用。

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