The biological potency of covalent insulin-receptor complexes. Dependence on site of cross-linkage.

G Klotz, D J Saunders, D Brandenburg
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引用次数: 4

Abstract

A radioactive photosensitive insulin analogue, 125I-N epsilon B29-(4-azido-2-nitrophenyl-acetyl)insulin, was covalently bound to the receptors of isolated rat adipocytes by irradiation with UV light. This caused a stimulation of lipogenesis. The relative potency of the covalent complexes to that of normal reversible complexes was calculated by comparing the amounts of radioactivity required to be covalently or reversibly bound by adipocytes to cause the same levels of stimulation. For several different occupancies , this relative potency was constant at 50 +/- 3%. Previous studies had shown that the relative potency of covalently bound 125I-N alpha B2-(4-azido-2- nitrophenylacetyl )des- PheB1 -insulin was only 25 +/- 4% under identical conditions. This demonstrates that the sites of crosslinking have a marked effect on the potency of the covalent hormone-receptor complex. It appears that attachment through the C-terminus of the B-chain leads to a better stabilization of the biologically active form than linking through the more flexible N-terminus.

共价胰岛素受体复合物的生物学效力。交联位点依赖性。
一种放射性光敏胰岛素类似物125I-N epsilon B29-(4-叠氮-2-硝基苯基乙酰)胰岛素在紫外光照射下与离体大鼠脂肪细胞受体共价结合。这引起了脂肪生成的刺激。共价复合物与正常可逆复合物的相对效力是通过比较与脂肪细胞共价或可逆结合以引起相同水平的刺激所需的放射性量来计算的。对于几种不同的占用,这种相对效力恒定在50 +/- 3%。先前的研究表明,在相同的条件下,共价结合的125I-N α B2-(4-叠氮-2-硝基苯乙酰基)des- PheB1 -胰岛素的相对效力仅为25 +/- 4%。这表明交联位点对共价激素受体复合物的效力有显著影响。通过b链的c端连接比通过更灵活的n端连接能更好地稳定生物活性形式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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