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胰岛素类似物与大鼠肝细胞膜部分纯化胰岛素受体的结合(作者译)

[Binding of insulin analogs to partially purified insulin receptor from rat liver membrane (author's transl)].

作者信息

Summ H D, Schiemann H, Volkmann H D

出版信息

Hoppe Seylers Z Physiol Chem. 1976 May;357(5):683-93.

PMID:964927
Abstract

The insulin binding fraction was solubilized from rat liver membrane vesicles by triton and partially purified up to the specific binding activity of 2.1 pmol/mg. A further characteristic of the partially purified soluble receptor is a decrease in irreversible binding to 0.36% (+/- 0.28) with regard to total iodine insulin and to (+/- 1.8) in comparison to reversible binding. From Scatchard plots a high affinity binding site (KD = 5 X 10(-10)M) with low capacity (5 pmol/mg) and a low affinity binding site (KD = 3 X 10(-8) M) with high capacity (30 pmol/mg) can be seen. With carefully prepared liver membrane vesicles, the dissociation constant of the high affinity binding site from Scatchard plot is only 2 X 10(-9)M. With liver membrane vesicles, isolated for preparative purification procedure, the high affinity binding site could not be demonstrated. Displacement studies with insulin analogs were performed with [A1-D-alanine] insulin, [A1-L-alanine] insulin, [des-Gly-A1, NB1, NB29-(Msc)2]-insulin, proinsulin and [desoctapeptid B23-B30]-insulin. Results of binding measurements are presented in half-maximal iodo-insulin binding, in determination of inhibitor- and dissociation constants from Dixon-, Scatchard- and Lineweaver-Burk plots. There are equal relative binding potencies of analogs, observed with crude membrane vesicles and partially purified soluble receptor, although there is a 50-fold difference in specific binding activity. Biologically active insulins are characterized by strong binding to the high affinity binding site. The binding to the low affinity binding site is not correlated to the biological activity of the insulin analog. With insulin and biologically responsive analogs a non-linear curve in the double-reciprocal Lineweaver-Burk plot can be observed. Analogs with low biological activity show a linear dependency. Functional interactions of insulin with the receptor can be demonstrated in a high affinity binding with the first binding site of the Scatchard plot and in a non-linear hyperbolic Lineweaver-Burk plot.

摘要

胰岛素结合部分通过曲拉通从大鼠肝膜囊泡中溶解出来,并部分纯化至比结合活性为2.1 pmol/mg。部分纯化的可溶性受体的另一个特征是,与总碘胰岛素相比,不可逆结合减少至0.36%(±0.28),与可逆结合相比减少至(±1.8)。从Scatchard图中可以看出,存在一个高亲和力结合位点(KD = 5×10⁻¹⁰M),容量低(5 pmol/mg),以及一个低亲和力结合位点(KD = 3×10⁻⁸M),容量高(30 pmol/mg)。对于精心制备的肝膜囊泡,从Scatchard图中得出的高亲和力结合位点的解离常数仅为2×10⁻⁹M。对于通过制备性纯化程序分离的肝膜囊泡,无法证明存在高亲和力结合位点。用[A1-D-丙氨酸]胰岛素、[A1-L-丙氨酸]胰岛素、[去甘氨酸-A1,NB1,NB29-(Msc)2]-胰岛素、胰岛素原和[去八肽B23-B30]-胰岛素进行了胰岛素类似物的置换研究。结合测量结果以半数最大碘胰岛素结合表示,通过Dixon图、Scatchard图和Lineweaver-Burk图确定抑制剂和解离常数。在粗膜囊泡和部分纯化的可溶性受体中观察到类似物具有相等的相对结合效力,尽管比结合活性存在50倍的差异。生物活性胰岛素的特征是与高亲和力结合位点有强烈结合。与低亲和力结合位点的结合与胰岛素类似物的生物活性无关。对于胰岛素和生物反应性类似物,在双倒数Lineweaver-Burk图中可以观察到非线性曲线。生物活性低的类似物显示出线性依赖性。胰岛素与受体的功能相互作用可以通过与Scatchard图的第一个结合位点的高亲和力结合以及非线性双曲线Lineweaver-Burk图来证明。

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