Lin M C, Wright D E, Hruby V J, Rodbell M
Biochemistry. 1975 Apr 22;14(8):1559-63. doi: 10.1021/bi00679a002.
We have compared the ability of glucagon and three highly purified derivatives of the hormone to activate hepatic adenylate cyclase (an expression of biological activity of the hormone) and to compete with [125]glucagon for binding to sites specific for glucagon in hepatic plasma membranes. Relative to that of glucagon, biological activity and affinity of [des-Asn-28,Thr-29](homoserine lactone-27)-glucagon, prepared by CNBr treatment of glucagon, were reduced equally by 40- to 50-fold. By contrast, des-His-1-glucagon, prepared by an insoluble Edman reagent and highly purified (less than 0.5% contamination with native glucagon), displayed a 15-fold decrease in affinity but a 50-fold decrease in biological activity relative to that of the native hormone. At maximal stimulating concentrations, des-His-1-glucagon yielded 70% of the activity given by saturating concentrations of glucagon. Thus, des-His-1-glucagon can be classified as a partial weak agonist. Highly purified monoiodoglucagon and native glucagon displayed identical biological activity and affinity for the binding sites. Our findings suggest that the hydrophilic residues at the terminus of the carboxy region of glucagon are involved in the process of recognition at the glucagon receptor but do not participate in the sequence of events leading to activation of adenylate cyclase. The amino-terminal histidyl residue in glucagon plays an important but not obligatory role in the expression of hormone action and contributes to a significant extent in the recognition process.
我们比较了胰高血糖素及其三种高度纯化的衍生物激活肝腺苷酸环化酶的能力(这是该激素生物活性的一种表现),以及它们与[125]胰高血糖素竞争结合肝细胞膜上胰高血糖素特异性位点的能力。相对于胰高血糖素,通过用溴化氰处理胰高血糖素制备的[去天冬酰胺-28,苏氨酸-29](高丝氨酸内酯-27)-胰高血糖素的生物活性和亲和力同等降低了40至50倍。相比之下,通过不溶性埃德曼试剂制备并高度纯化(与天然胰高血糖素的污染小于0.5%)的去组氨酸-1-胰高血糖素,其亲和力相对于天然激素降低了15倍,但生物活性降低了50倍。在最大刺激浓度下,去组氨酸-1-胰高血糖素产生的活性为饱和浓度胰高血糖素所产生活性的70%。因此,去组氨酸-1-胰高血糖素可被归类为部分弱激动剂。高度纯化的单碘胰高血糖素和天然胰高血糖素对结合位点显示出相同的生物活性和亲和力。我们的研究结果表明,胰高血糖素羧基区域末端的亲水性残基参与了胰高血糖素受体的识别过程,但不参与导致腺苷酸环化酶激活的一系列事件。胰高血糖素中的氨基末端组氨酸残基在激素作用的表达中起重要但非必需的作用,并且在识别过程中在很大程度上起作用。