胰岛素样生长因子结合蛋白-3:影响二元和三元络合物形成的因素。

Growth regulation Pub Date : 1996-03-01
S R Holman, R C Baxter
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引用次数: 0

摘要

IGF结合蛋白-3 (IGFBP-3)是成人IGF- i和IGF- ii的主要血清载体,主要与IGF和酸不稳定亚基(ALS)形成三元复合物循环。IGF和ALS在温度、离子强度和pH接近循环条件下的结合亲和性尚未确定。在pH 4.0-5.5时IGF-I和-II结合最佳,在pH 7.4时相对较差。在50 mmol/l磷酸盐缓冲液中加入0.1 mol/l NaCl, IGF-II对IGFBP-3的亲和力提高了2倍,对IGF-I的亲和力提高了4倍。当pH值为5.5 ~ 6.0时,ALS的结合达到峰值,pH值为7.4时,ALS的结合明显减少,此时每mol IGFBP-3仅结合约0.4 mol ALS,亲和力大大降低。与22℃相比,37℃时ALS亲和力进一步降低,0.1 mol/l NaCl存在时ALS亲和力进一步降低。在“生理”条件下,ALS结合IGF-I-IGFBP-3和IGF-II-IGFBP-3复合物的亲和力(分别为2.5 × 10(8) l/mol和5.8 × 10(7) l/mol)比形成相应二元配合物的常数低300倍和2000倍。因此,ALS与IGFBP-3复合物的结合比之前认识到的弱得多,强调了ALS解离作为调节IGF生物利用度的控制因素的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Insulin-like growth factor binding protein-3: factors affecting binary and ternary complex formation.

IGF binding protein-3 (IGFBP-3), the major serum carrier of IGF-I and IGF-II in adults, circulates predominantly in a ternary complex with IGF and the acid-labile subunit (ALS). The affinities of IGF and ALS binding have not previously been determined under conditions of temperature, ionic strength and pH which approximate those in the circulation. IGF-I and -II binding was optimal at pH 4.0-5.5, and relatively poor at pH 7.4. The addition of 0.1 mol/l NaCl to 50 mmol/l phosphate buffer increased the affinity of IGF-II for IGFBP-3 by 2-fold, and of IGF-I by 4-fold. ALS binding peaked at pH 5.5-6.0, and was markedly reduced at pH 7.4, where only approximately 0.4 mol ALS was bound per mol IGFBP-3, with greatly reduced affinity. ALS affinity was further reduced at 37 degrees C compared to 22 degrees C, and in the presence of 0.1 mol/l NaCl compared to its absence. Under 'physiological' conditions, the affinities of ALS binding to IGF-I-IGFBP-3 and IGF-II-IGFBP-3 complexes (2.5 x 10(8) l/mol and 5.8 x 10(7) l/mol, respectively) are 300-fold and 2000-fold lower than the constants for the formation of the corresponding binary complexes. Thus, ALS binding to IGFBP-3 complexes is much weaker than previously recognised, emphasising the importance of ALS dissociation as a controlling factor in the regulation of IGF bioavailability.

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