首页> 外文期刊>British Journal of Pharmacology >Point mutation increases a form of the NK1 receptor with high affinity for neurokinin A and B and septide.
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Point mutation increases a form of the NK1 receptor with high affinity for neurokinin A and B and septide.

机译:点突变增加了对神经激肽A和B以及肽具有高亲和力的NK1受体形式。

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1. The binding modalities of substance P and neurokinin A on the wild type and Gly166 to-Cys mutant NK1 receptors expressed on CHO cells were investigated in homologous and heterologous binding experiments using both radiolabelled substance P and neurokinin A. 2. On the wild type NK1 receptor NKA displaces radiolabelled substance P with very low apparent affinity, despite its high-affinity binding constant (determined in homologous binding experiments). The Gly166 to-Cys substitution in the NK1 tachykinin receptor greatly enhances the apparent affinity of neurokinin A in competition for radiolabelled substance P, but it does not change the binding constant of neurokinin A. The mutation, thereby, eliminates the discrepancy between the low apparent affinity and the high binding constant of neurokinin A. 3. On the wild type receptor the binding capacity of neurokinin A is significantly smaller than that of substance P. In contrast, the two tachykinins bind to approximately the same number of sites on the mutant receptor. 4. Simultaneous mass action law analysis of binding data in which multiple radioligands were employed in parallel demonstrated that a one-site model was unable to accommodate all the experimental data, whereas a two-site model provided a dramatically better description. 5. These two receptor-sites display equally high affinity for substance P, while neurokinin A strongly discriminates between a high and a low affinity component. The binding affinities of neurokinin A are not affected by the mutation, which instead specifically alters the distribution between receptor sites in favour of a high affinity neurokinin A binding form. 6. The low apparent affinity and binding capacity of neurokinin A on the wild type receptor results from neurokinin A binding with high affinity only to a fraction of the sites labelled by substance P. The mutation increases the proportion of this site, and consequently enhances the apparent affinity and binding capacity of neurokinin A. 7. The binding modalities of septide-like ligands (i.e. neurokinin B, SP(6-11), SP-methyl ester) are affected similarly to neurokinin A and are better resolved into two sites. The mutation leaves the affinity of these ligands for the two receptor forms unchanged, but increases the fraction of high-affinity sites. On the other hand, the binding of non-peptide and peptide antagonists (SR140.333 and FK888) behaved similarly to substance P with a single high affinity site that is unaffected by the mutation. 8. These findings may suggest that the NK1 receptor exists in two different forms with similar affinity for substance P and NK1 antagonists, but with a high and a low affinity for neurokinin A and septide-like ligands. Hence, the Gly166 in the NK1 receptor would seem to control the distribution between a pan-reactive form and a substance P-selective form of the receptor.
机译:1.在使用放射性标记物质P和神经激肽A的同源和异源结合实验中,研究了P物质和神经激肽A在野生型上的结合方式以及在CHO细胞上表达的Gly166 to-Cys突变NK1受体的结合方式。2.在野生型上NK1受体NKA尽管具有高亲和力结合常数(在同源结合实验中确定),却以非常低的表观亲和力取代了放射性标记的物质P。 NK1速激肽受体中的Gly166 to-Cys取代可大大增强神经激肽A在与放射性标记物质P竞争中的表观亲和力,但不会改变神经激肽A的结合常数。因此,该突变消除了低表观激酶之间的差异。亲和力和神经激肽A的高结合常数。3.在野生型受体上,神经激肽A的结合能力明显小于物质P的结合能力。相反,两种速激肽结合突变体受体上大约相同数目的位点。 4.同时采用多个放射性配体的结合数据的同时质量作用定律分析表明,一个站点模型无法容纳所有实验数据,而两个站点模型则提供了更好的描述。 5.这两个受体位点对物质P表现出同样高的亲和力,而神经激肽A则强烈区分高亲和力和低亲和力成分。神经激肽A的结合亲和力不受突变的影响,而突变会特异性地改变受体位点之间的分布,从而形成高亲和力的神经激肽A结合形式。 6.神经激肽A在野生型受体上的表观亲和力和结合能力低,是由于神经激肽A仅以高亲和力与P物质标记的部分位点结合而引起的。突变增加了该位点的比例,因此增强了该位点的比例。 7.肽样配体(即神经激肽B,SP(6-11),SP-甲基酯)的结合方式与神经激肽A的结合方式相似,并且可以更好地分解为两个位点。突变使这些配体对两种受体形式的亲和力保持不变,但增加了高亲和力位点的比例。另一方面,非肽和肽拮抗剂(SR140.333和FK888)的结合行为与具有单一高亲和力位点且不受突变影响的物质P相似。 8.这些发现可能表明NK1受体以两种不同的形式存在,对P物质和NK1拮抗剂具有相似的亲和力,但对神经激肽A和肽样配体的亲和力高而低。因此,NK1受体中的Gly166似乎可以控制受体的泛反应形式和P物质选择性形式之间的分布。

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