Cascieri M A, Liang T
J Biol Chem. 1983 Apr 25;258(8):5158-64.
Rat brain cortex membranes bind to a conjugate of substance P and 125I-labeled Bolton-Hunter reagent, and this binding can be inhibited by a low concentration of substance P (Kd = 1.2 +/- 0.4 X 10(-8) M). This binding is reversible and saturable (0.5 +/- 0.1 pmol of binding sites/mg of protein). Fragments of substance P as small as the carboxyl-terminal hexapeptide can inhibit the binding although their potency decreases with the decrease in the length of the peptides. The binding affinities of smaller peptides or peptides in which the carboxyl-terminal amide or amino acids are removed are drastically reduced. Biologically active analogs of substance P, physalaemin, eledoisin, substance P methyl ester, [D-Ala0]hepta(5-11)substance P, kassinin, and the eledoisin-related hexapeptide also can inhibit the binding. However, the binding is not inhibited by polypeptides structurally unrelated to substance P or by amine hormones/neurotransmitters. The binding affinities of biologically active peptides to rat brain cortex membranes are almost identical with their affinities for rat parotid cells which we previously determined. Furthermore, the recently described substance P antagonist, [D-Pro, D-Trp]substance P, inhibits the binding of the 125I-labeled substance P derivative to brain cortex membranes and to parotid cells equally well. These results suggest that the substance P receptors in the brain cortex and the parotid gland are similar. The brain cortex membrane binding of the 125I-labeled substance P derivative can be inhibited by micromolar concentrations of GTP, GDP, and their analogs. ITP and IDP were less active. Adenine and pyridine nucleotides were inactive.
大鼠脑皮质膜可与P物质和125I标记的博尔顿-亨特试剂的偶联物结合,且这种结合可被低浓度的P物质抑制(解离常数Kd = 1.2±0.4×10(-8) M)。这种结合是可逆的且具有饱和性(结合位点为0.5±0.1 pmol/mg蛋白质)。小至羧基末端六肽的P物质片段均可抑制这种结合,尽管其效力会随着肽长度的缩短而降低。较小的肽或去除了羧基末端酰胺或氨基酸的肽的结合亲和力会大幅降低。P物质的生物活性类似物,如physalaemin、eledoisin、P物质甲酯、[D-Ala0]七肽(5 - 11)P物质、kassinin以及eledoisin相关六肽也可抑制这种结合。然而,与P物质结构不相关的多肽或胺类激素/神经递质不会抑制这种结合。生物活性肽对大鼠脑皮质膜的结合亲和力与其对我们之前测定的大鼠腮腺细胞的亲和力几乎相同。此外,最近描述的P物质拮抗剂[D-Pro, D-Trp]P物质,对125I标记的P物质衍生物与脑皮质膜和腮腺细胞的结合具有同等良好的抑制作用。这些结果表明,脑皮质和腮腺中的P物质受体相似。125I标记的P物质衍生物与脑皮质膜的结合可被微摩尔浓度的GTP、GDP及其类似物抑制。ITP和IDP的活性较低。腺嘌呤和吡啶核苷酸无活性。