首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Region selective up-regulation of micro-, delta- and kappa-opioid receptors but not opioid receptor-like 1 receptors in the brains of enkephalin and dynorphin knockout mice.
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Region selective up-regulation of micro-, delta- and kappa-opioid receptors but not opioid receptor-like 1 receptors in the brains of enkephalin and dynorphin knockout mice.

机译:脑啡肽和强啡肽敲除小鼠大脑中微,δ和κ阿片受体的区域选择性上调,但不像阿片受体样1受体。

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The role of endogenous opioid peptides and receptors has recently been investigated using knockout mice. Although the affinities of opioid peptides for opioid receptors has been known for many years there is still some uncertainty over which receptor is the endogenous target for each peptide. To address this issue we have studied using quantitative autoradiography the levels of all four opioid receptor subtypes (micro, delta, kappa and opioid receptor-like 1 [ORL1]) in brains sectioned from enkephalin and dynorphin knockouts, as well as from double knockouts. Because receptor up-regulation has been observed when its cognate ligand-peptide is genetically ablated, regional changes in receptor binding in knockout mice may reflect areas where the peptide ligand is tonically active at its receptor or played a role in receptor regulation. In addition, the study aimed to correlate previously observed behaviour in these animals with receptor modulation. Marked region-specific up-regulation of the micro, delta,and kappa opioid receptors but not ORL1 receptors was observed in proenkephalin and prodynorphin knockouts. In proenkephalin knockouts this was most pronounced for the micro- and delta-receptor and in prodynorphin knockouts for the kappa-receptor. Combinatorial double knockouts did not show any changes in addition to those observed in single knockouts. The largest changes were observed in limbic regions and our results suggest that proenkephalin peptides are tonically active at micro and delta-receptors predominantly in these areas. Prodynorphin peptides appear to regulate mostly the kappa-receptor but they are also modulators of micro- and delta-receptors.
机译:最近已经使用敲除小鼠研究了内源性阿片肽和受体的作用。尽管已知阿片肽对阿片受体的亲和力已有很多年,但是对于每种肽的内源性靶标是哪种受体仍存在一些不确定性。为了解决这个问题,我们使用定量放射自显影技术研究了脑啡肽和强啡肽基因敲除以及双重基因敲除后脑中所有四种阿片受体亚型(micro,delta,kappa和类阿片受体样1 [ORL1])的水平。因为当其同源配体-肽被遗传消融时已经观察到受体上调,所以基因敲除小鼠中受体结合的区域变化可能反映了肽配体对其受体具有调性活性或在受体调节中起作用的区域。此外,该研究旨在将先前在这些动物中观察到的行为与受体调节相关联。在前脑啡肽和前强啡肽敲除中观察到微,δ和κ阿片样物质受体的显着区域特异性上调,但未观察到ORL1受体。在前脑啡肽敲除中,对于微受体和δ受体最明显,而在强啡肽敲除中对κ受体最明显。组合双基因敲除除单基因敲除中观察到的变化外没有任何变化。在边缘区域观察到最大的变化,我们的结果表明,脑啡肽原肽主要在这些区域的微受体和δ受体上具有声调活性。前强啡肽似乎主要调节κ受体,但它们还是微受体和δ受体的调节剂。

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