Cook J V, McGregor A, Lee T, Milligan G, Eidne K A
Medical Research Council Reproductive Biology Unit, Centre for Reproductive Biology, Edinburgh, Scotland, United Kingdom.
Endocrinology. 1996 Jul;137(7):2851-8. doi: 10.1210/endo.137.7.8770906.
The roles of disulfide and sulfhydryl groups in the specific binding of TRH to its receptor have been examined. In all TRH receptors (TRH-Rs) isolated from different species so far, there are only two extracellular cysteine residues (Cys98 in the extracellular loop between transmembrane helices 2 and 3 and Cys179 in the extracellular loop between transmembrane helices 4 and 5) that are in positions homologous to cysteine residues in other G protein-coupled receptors. Another Cys (Cys100) is located in close proximity to Cys98 at the interface between the first extracellular loop and third transmembrane domain. To assess the role of these TRH-R Cys residues in disulfide bonding interactions, they were mutated to either Ser or Ala. Six mutant receptors (Cys98Ser, Cys98Ala, Cys179Ser, Cys179Ala, Cys100Ser, and Cys100Ala) were expressed in COS-1 cells and tested for their ability to bind TRH and to activate total inositol phosphate (IP) formation. TRH-R mutants Cys100Ser and Cys100Ala showed TRH binding affinities and IP activation similar to the wild-type (WT). In contrast, mutants Cys98Ser, Cys98Ala, Cys179Ser, and Cys179Ala showed no high affinity TRH binding. The potencies of Cys98Ala and Cysl79Ala as measured by IP stimulation were decreased by four orders of magnitude when compared with WT. Cys98Ser potency decreased by five orders of magnitude, whereas Cys179Ser showed no IP production. Northern blotting confirmed expression of all the mutant TRH-Rs at the messenger RNA (mRNA) level. An epitope tag derived from the Haemophilus influenza hemagglutinin protein was incorporated at the NH2 termini of the TRH-R WT and TRH-R Cys mutants to allow the independent assessment of cell surface expression of receptor protein. TRH-R mutants that failed to show receptor binding (Cys98Ser, Cys98Ala, Cys179Ala) showed WT levels of cell surface receptor expression, indicating that loss of receptor binding in these mutants is not attributable to loss of receptor expression. In contrast, cell surface expression of Cysl79Ser, which showed no ligand induced IP stimulation, could not be detected. Dithiothreitol, a disulfide bond reducing agent, and p-chloromercuribenzoic acid (p-CMB), a sulfhydryl blocking compound, reduced specific TRH binding in a dose-dependent manner. The inhibition of binding by dithiothreitol implies that the integrity of a disulfide bond is important for TRH binding to its receptor. The dramatic inhibition of TRH binding by p-CMB indicates that free sulfhydryl groups are also associated with the binding of the ligand to its receptor. This study presents evidence that a disulfide bond exists between Cys98 and Cys179 which is essential for maintaining the receptor in the correct conformation for ligand binding. Cys100 is not thought to have a disulfide bonding interaction role. Results obtained after chemical modification have shown that free sulfhydryl groups within the TRH-R may also have a role in ligand interactions.
已对二硫键和巯基在促甲状腺激素释放激素(TRH)与其受体特异性结合中的作用进行了研究。在迄今从不同物种分离出的所有TRH受体(TRH-Rs)中,仅有两个细胞外半胱氨酸残基(跨膜螺旋2和3之间的细胞外环中的Cys98以及跨膜螺旋4和5之间的细胞外环中的Cys179),它们所处位置与其他G蛋白偶联受体中的半胱氨酸残基同源。另一个半胱氨酸(Cys100)位于第一个细胞外环与第三个跨膜结构域之间的界面处,紧邻Cys98。为评估这些TRH-R半胱氨酸残基在二硫键相互作用中的作用,将它们突变为丝氨酸(Ser)或丙氨酸(Ala)。六种突变受体(Cys98Ser、Cys98Ala、Cys179Ser、Cys179Ala、Cys100Ser和Cys100Ala)在COS-1细胞中表达,并检测它们结合TRH以及激活总肌醇磷酸(IP)形成的能力。TRH-R突变体Cys100Ser和Cys100Ala显示出与野生型(WT)相似的TRH结合亲和力和IP激活能力。相比之下,突变体Cys98Ser、Cys98Ala、Cys179Ser和Cys179Ala未显示出高亲和力的TRH结合。与WT相比,通过IP刺激测定的Cys98Ala和Cys179Ala的效力降低了四个数量级。Cys98Ser的效力降低了五个数量级,而Cys179Ser未显示出IP产生。Northern印迹法证实了所有突变型TRH-Rs在信使核糖核酸(mRNA)水平的表达。源自流感嗜血杆菌血凝素蛋白的表位标签被整合到TRH-R WT和TRH-R半胱氨酸突变体的NH2末端,以便独立评估受体蛋白的细胞表面表达。未能显示受体结合的TRH-R突变体(Cys98Ser、Cys98Ala、Cys179Ala)显示出WT水平的细胞表面受体表达,这表明这些突变体中受体结合的丧失并非归因于受体表达的丧失。相比之下,未显示出配体诱导的IP刺激的Cys179Ser的细胞表面表达无法检测到。二硫苏糖醇(一种二硫键还原剂)和对氯汞苯甲酸(p-CMB,一种巯基封闭化合物)以剂量依赖方式降低了特异性TRH结合。二硫苏糖醇对结合的抑制表明二硫键的完整性对于TRH与其受体的结合很重要。p-CMB对TRH结合的显著抑制表明游离巯基也与配体与其受体的结合相关。这项研究提供了证据,表明Cys98和Cys179之间存在二硫键,这对于将受体维持在与配体结合的正确构象中至关重要。Cys100被认为不具有二硫键相互作用作用。化学修饰后获得的结果表明,TRH-R内的游离巯基在配体相互作用中可能也起作用。