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首页> 外文期刊>Acta Biochimica et Biophysica Sinica >Insulin analogs with B24 or B25 phenylalanine replaced by biphenylalanine
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Insulin analogs with B24 or B25 phenylalanine replaced by biphenylalanine

机译:B24或B25苯丙氨酸被联苯丙氨酸替代的胰岛素类似物

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摘要

B24 and B25 phenylalanines (Phe) play important roles in insulin structure and function. Insulin analogs with B24 Phe or B25 Phe replaced by biphenylalanine (Bip) were prepared by enzymatic semisynthesis. The biological activities were determined by receptor binding assay and in vivo mouse convulsion assay. The results showed that B25 Bip insulin has 139% receptor binding activity and 50% in vivo biological activity, whereas B24 Bip insulin is inactive, when compared with native insulin, suggesting that B24 Phe is crucial for insulin activity. The structures in solution were studied by circular dichroism and fluoremetry, and our results suggested that the insulin analogs with low activities tend to be more tightly packed. The association properties were studied by size exclusion chromatography. The Bip-amide replacement of B24 Phe in deshexapeptide insulin or B25 Phe in despentapeptide insulin will cause the monomeric B24 Phe-amide deshexapeptide insulin or B25 Phe-amide despentapeptide insulin to associate and form dimers, whereas the mutations of B24 Phe in insulin will make insulin dimers dissociate into insulin monomers.
机译:B24和B25苯丙氨酸(Phe)在胰岛素的结构和功能中起重要作用。通过酶促半合成制备具有被联苯丙氨酸(Bip)取代的B24 Phe或B25 Phe的胰岛素类似物。通过受体结合测定和体内小鼠惊厥测定来确定生物学活性。结果显示,与天然胰岛素相比,B25 Bip胰岛素具有139%的受体结合活性和50%的体内生物活性,而B24 Bip胰岛素则没有活性,这表明B24 Phe对胰岛素活性至关重要。通过圆二色性和荧光法研究了溶液中的结构,我们的结果表明,活性低的胰岛素类似物往往更紧密地堆积。通过尺寸排阻色谱法研究缔合性质。去六肽胰岛素中的B24 Phe或去五肽胰岛素中的B25 Phe的Bip-酰胺替代将导致单体B24 Phe-酰胺去六肽胰岛素或B25 Phe-酰胺去五肽胰岛素缔合并形成二聚体,而胰岛素中B24 Phe的突变会使胰岛素二聚体解离为胰岛素单体。

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