首页> 美国卫生研究院文献>Biochemical Journal >Preferential association of the insulin-like growth factors I and II with metabolically inactive and active carrier-bound complexes in serum.
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Preferential association of the insulin-like growth factors I and II with metabolically inactive and active carrier-bound complexes in serum.

机译:胰岛素样生长因子I和II与血清中代谢不活跃和活跃的载体结合复合物的优先关联。

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摘要

Ion-exchange chromatography of serum on DEAE-Sephadex A-50 using a stepwise NaCl gradient showed that complexes enriched with insulin-like growth factors I and II (IGF-I and IGF-II) could be preferentially eluted. A fraction eluted with 0.075 M-NaCl preferentially contained immunoreactive IGF-I with peak levels appearing in fractions of Mr approx. 110,000. The IGF-I-binding protein complex itself had low bioactivity as measured in a non-suppressible insulin-like (NSILA) bioassay. On conversion to free IGF-I by gel-permeation chromatography on Sephadex G-75 in 1% formic acid, however, the IGF-I did express its intrinsic NSILA bioactivity. In contrast, an IGF-II-enriched complex was eluted from the DEAE-Sephadex with 0.15 M-NaCl. Practically all of the recovered NSILA of the original serum was present in this fraction, in the Mr range 70,000-300,000 with a peak of 150,000. Chromatography on Sephadex G-75 in 1% formic acid separated this high-Mr NSILA into low-Mr (less than 15000) IGF-II and high-Mr acid-stable NSILA-P. The high-Mr IGF-II complex bound to concanavalin A-Sepharose, suggesting that it was a glycoprotein. The results confirm previous reports that a large portion of the NSILA of whole serum can be accounted for by a biologically active acid-dissociable complex. These data show for the first time that this active complex consists of an IGF-II-preferring binding protein. In direct contrast, the IGF-I-preferring complex does not express NSILA bioactivity until the IGF-I is liberated through acidification. The presence of a metabolically active IGF-II complex in serum raises questions as to its possible biological role in the adult.
机译:使用逐步的NaCl梯度在DEAE-Sephadex A-50上进行血清离子交换色谱显示,富含胰岛素样生长因子I和II(IGF-I和IGF-II)的复合物可以优先洗脱。用0.075 M-NaCl洗脱的馏分优先含有免疫反应性IGF-I,其峰值水平出现在Mr的馏分中。 110,000如在不可抑制的胰岛素样(NSILA)生物测定中所测,IGF-I结合蛋白复合物本身具有较低的生物活性。然而,在Sephadex G-75上的凝胶渗透色谱法(在1%甲酸中)转化为游离IGF-1时,IGF-1确实表达了其固有的NSILA生物活性。相反,用0.15 M-NaCl从DEAE-Sephadex洗脱了富含IGF-II的复合物。实际上,原始血清的所有回收的NSILA都存在于此馏分中,Mr范围为70,000-300,000,峰值为150,000。在Sephadex G-75的1%甲酸中进行色谱分离,将高Mr的NSILA分离为低Mr(小于15000)的IGF-II和高Mr的酸稳定的NSILA-P。高Mr IGF-II复合物与伴刀豆球蛋白A-琼脂糖结合,表明它是糖蛋白。结果证实了以前的报道,即整个血清NSILA的大部分可以由具有生物活性的酸可分解复合物解释。这些数据首次表明该活性复合物由优选IGF-II的结合蛋白组成。直接形成对比,在通过酸化释放IGF-1之前,优选IGF-1的复合物不表达NSILA生物活性。血清中具有代谢活性的IGF-II复合物的存在引发了对其在成人中可能的生物学作用的质疑。

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