首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Association of a lower molecular weight protein to the mu-opioid receptor demonstrated by (125)I-beta-endorphin cross-linking studies.
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Association of a lower molecular weight protein to the mu-opioid receptor demonstrated by (125)I-beta-endorphin cross-linking studies.

机译:(125)I-β-内啡肽交联研究表明,低分子量蛋白质与μ阿片受体相关。

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摘要

Cross-linking experiments using the (125)I-beta-endorphin revealed the presence of several receptor-related species in cell lines expressing endogenous opioid receptors, including a small molecular mass protein (approximately 22 kDa). Previous reports have suggested that this 22-kDa (125)I-beta-endorphin cross-linked protein could be the degradative product from a higher molecular mass species, i.e., a fragment of the receptor. To determine if this protein is indeed a degraded receptor fragment, (125)I-beta-endorphin was cross-linked to the (His)(6) epitope-tagged mu-opioid receptor (His-mu) stably expressed in the murine neuroblastoma Neuro(2A) cells. Similar to earlier reports with cell lines expressing endogenous receptors, two major bands of 72- and 25-kDa proteins were specifically cross-linked. Initial cross-linking experiments indicated the absolute requirement of the high-affinity (125)I-beta-endorphin binding to the mu-opioid receptor prior to the appearance of the low molecular weight species, suggesting that the 22-kDa protein could be a degraded fragment of the receptor. However, variations in the ratios of these protein bands being cross-linked by several homo- or heterobifunctional cross-linking agents were observed. Although neither the carboxyl terminus mu-opioid receptor-specific antibodies nor the antibodies against the epitope at the amino terminus of the receptor could recognize the 22-kDa protein, this (125)I-beta-endorphin cross-linked species could be coimmunoprecipitated with the receptor antibodies or could be isolated with a nickel resin affinity chromatography. The direct physical association of the 22-kDa protein with the receptor was demonstrated also by the observation that the 22-kDa protein could not bind to the nickel resin alone, but that its binding to the nickel resin was restored in the presence of the His-mu. Taken together, these results suggest that the 22-kDa protein cross-linked by (125)I-beta-endorphin is not a degradative product, but a protein located within the proximity of the mu-opioid receptor, and that it is tightly associated with the receptor.
机译:使用(125)I-β-内啡肽的交联实验揭示了在表达内源性阿片受体的细胞系中存在几种受体相关物质,包括小分子量蛋白质(约22 kDa)。以前的报道表明,这种22-kDa(125)I-β-内啡肽交联蛋白可能是来自较高分子量种类,即受体片段的降解产物。为了确定该蛋白是否确实是降解的受体片段,将(125)I-β-内啡肽与在鼠神经母细胞瘤中稳定表达的(His)(6)表位标记的μ阿片受体(His-mu)交联。 Neuro(2A)细胞。与早期报道表达内源性受体的细胞系相似,两个主要的72kDa和25kDa蛋白带被特异性交联。最初的交联实验表明,在出现低分子量物质之前,对高亲和力(125)I-β-内啡肽与mu阿片受体的结合有绝对的要求,这表明22 kDa蛋白可能是一种受体的降解片段。然而,观察到这些蛋白质条带被几种同双或异双功能交联剂交联的比率的变化。尽管羧基末端类阿片受体特异性抗体和针对受体氨基末端表位的抗体均无法识别22 kDa蛋白,但该(125)I-β-内啡肽交联物种可与以下物质共免疫沉淀:受体抗体或可以用镍树脂亲和色谱法分离。还通过观察到22-kDa蛋白不能单独与镍树脂结合,但是在存在His的情况下恢复了其与镍树脂的结合,从而证明了22-kDa蛋白与受体的直接物理缔合。 -亩。综上所述,这些结果表明被(125)I-β-内啡肽交联的22 kDa蛋白不是降解产物,而是位于mu阿片受体附近的蛋白,并且紧密相关与受体。

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