Poffenbarger P L, Ensinck J W, Hepp D K, Williams R H
J Clin Invest. 1968 Feb;47(2):301-20. doi: 10.1172/JCI105726.
Studies were undertaken in an attempt to clarify the apparent heterogeneous nature of human serum insulin-like activity. Methods of preparative zone electrophoresis on Pevikon, acid-ethanol extraction of trichloroacetic acid serum protein precipitates, adsorption chromatography on DEAE-cellulose and Dowex 50, gel filtration chromatography, and insulin antiserum immunoreactivity were used. The results establish the presence of a substance in serum with in vitro biological properties similar to insuln but with different physicochemical properties. The major portion of serum ILA measured by bioassay techniques can be attributed to the effects of this substance. Whereas the in vitro biological effects of this substance on muscle and adipose cells were similar to those of crystalline insulin, the substance is distinguished from insulin by: (1) the failure of insulin antiserum to inhibit its in vitro biological effect; (2) a slower electrophoretic mobility (in the gamma-beta globulin zone); and (3) a larger molecular weight, between 40,000 and 50,000 in these studies. It is similar to insulin since both are soluble in acid-ethanol. The results further indicate that previously described insulin-like activity in gamma-beta globulin preparations, the major portion of total serum insulin activity described in acid-ethanol extracts of serum, "bound" insulin, "atypical" insulin, and antibody nonsuppressible insulin-like activity bioassayed in diluted serum are all one and the same substance.
开展了多项研究,试图阐明人血清胰岛素样活性明显的异质性本质。采用了在聚乙烯醇上进行制备区带电泳、三氯乙酸血清蛋白沉淀的酸乙醇提取、在二乙氨基乙基纤维素和Dowex 50上进行吸附色谱、凝胶过滤色谱以及胰岛素抗血清免疫反应性等方法。结果证实血清中存在一种物质,其体外生物学特性与胰岛素相似,但理化性质不同。通过生物测定技术测得的血清ILA的主要部分可归因于该物质的作用。尽管该物质对肌肉和脂肪细胞的体外生物学作用与结晶胰岛素相似,但该物质与胰岛素的区别在于:(1)胰岛素抗血清不能抑制其体外生物学作用;(2)电泳迁移率较慢(在γ-β球蛋白区);(3)在这些研究中分子量较大,在40,000至50,000之间。它与胰岛素相似,因为两者都可溶于酸乙醇。结果还进一步表明,先前在γ-β球蛋白制剂中描述的胰岛素样活性、血清酸乙醇提取物中描述的总血清胰岛素活性的主要部分、“结合”胰岛素、“非典型”胰岛素以及在稀释血清中生物测定的抗体不可抑制的胰岛素样活性都是同一种物质。