Suppr超能文献

COOH末端B链结构域在胰岛素-受体相互作用中的作用。涉及胰岛素主链的扰动的鉴定。

Role of the COOH-terminal B-chain domain in insulin-receptor interactions. Identification of perturbations involving the insulin mainchain.

作者信息

Nakagawa S H, Tager H S

出版信息

J Biol Chem. 1987 Sep 5;262(25):12054-8.

PMID:3305501
Abstract

Previous studies have suggested that the COOH-terminal pentapeptide of the insulin B-chain can play a negative role in ligand-receptor interactions involving insulin analogs having amino acid replacements at position B25 (Nakagawa, S. H., and Tager, H. S. (1986) J. Biol. Chem. 261, 7332-7341). We undertook by the current investigations to identify the molecular site in insulin that induces this negative effect and to explore further the importance of conformational changes that might occur during insulin-receptor interactions. By use of semisynthetic insulin analogs containing amino acid replacements or deletions and of isolated canine hepatocytes, we show here that (a) the markedly decreased affinity of receptor for insulin analogs in which PheB25 is replaced by Ser is apparent for analogs in which up to 3 residues of the insulin B-chain have been deleted, but is progressively reversed in the corresponding des-tetrapeptide and des-pentapeptide analogs, and (b) unlike the case for deletion of TyrB26 and ThrB27, replacement of residue TyrB26 or ThrB27 has no effect to reverse the decreased affinity of full length analogs containing Ser for Phe substitutions at position B25. Additional experiments demonstrated that introduction of a cross-link between Lys epsilon B29 and Gly alpha A1 of insulin decreases the affinity of ligand-receptor interactions whether or not PheB25 is replaced by Ser. We conclude that the negative effect of the COOH-terminal B-chain domain on insulin-receptor interactions arises in greatest part from the insulin mainchain near the site of the TyrB26-ThrB27 peptide bond and that multiple conformational perturbations may be necessary to induce a high-affinity state of receptor-bound insulin.

摘要

先前的研究表明,胰岛素B链的羧基末端五肽在涉及B25位氨基酸被取代的胰岛素类似物的配体-受体相互作用中可能起负面作用(中川,S.H.,和塔格,H.S.(1986年)《生物化学杂志》261,7332 - 7341)。我们通过当前的研究来确定胰岛素中诱导这种负面影响的分子位点,并进一步探索胰岛素-受体相互作用过程中可能发生的构象变化的重要性。通过使用含有氨基酸取代或缺失的半合成胰岛素类似物以及分离的犬肝细胞,我们在此表明:(a)对于B链多达3个残基已被缺失的类似物,受体对其中PheB25被Ser取代的胰岛素类似物的亲和力显著降低,但在相应的去四肽和去五肽类似物中这种降低逐渐逆转;(b)与缺失TyrB26和ThrB27的情况不同,取代残基TyrB26或ThrB27对逆转含有Ser的全长类似物在B25位被Phe取代时降低的亲和力没有作用。额外的实验表明,在胰岛素的Lys εB29和Gly αA1之间引入交联会降低配体-受体相互作用的亲和力,无论PheB25是否被Ser取代。我们得出结论,B链羧基末端结构域对胰岛素-受体相互作用的负面影响在很大程度上源于靠近TyrB26-ThrB肽键位点的胰岛素主链,并且可能需要多种构象扰动来诱导受体结合胰岛素的高亲和力状态。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验