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对2型胰岛素样生长因子(IGF)受体亲和力改变的人胰岛素样生长因子(IGF)I的结构类似物。

Structural analogs of human insulin-like growth factor (IGF) I with altered affinity for type 2 IGF receptors.

作者信息

Cascieri M A, Chicchi G G, Applebaum J, Green B G, Hayes N S, Bayne M L

机构信息

Department of Biochemical Endocrinology, Merck Sharp & Dohme Research Laboratories, Rahway, New Jersey 07065.

出版信息

J Biol Chem. 1989 Feb 5;264(4):2199-202.

PMID:2536701
Abstract

We have used site-directed mutagenesis of a synthetic gene for insulin-like growth factor (IGF) I to prepare three analogs in which specific residues in the A region are replaced with the corresponding residues in the A chain of insulin. The analogs are [Ile41, Glu45, Gln46, Thr49, Ser50, Ile51, Ser53, Tyr55, Gln56]IGF I (A chain mutant), in which residue 41 is changed from threonine to isoleucine and residues 42 to 56 of the A region are replaced, [Thr49, Ser50, Ile51]IGF I, and [Tyr55, Gln56]IGF I. These analogs are all equipotent to IGF I at the type 1 IGF receptor in human placental membranes, and in stimulating the incorporation of [3H]thymidine into DNA in the rat vascular smooth muscle cell line A10. However, the A chain mutant and [Thr49, Ser50, Ile51]IGF I have greater than 20-fold lower relative affinity for the type 2 IGF receptor of rat liver membranes, respectively. In contrast, [Tyr55, Gln56]IGF I has 7-fold higher affinity than IGF I for the type 2 IGF receptor. Residues 49, 50, and 51 in IGF I are Phe-Arg-Ser and are strictly conserved in IGF II. Residues 55 and 56 of IGF I and the corresponding residues in IGF II are Arg-Arg and Ala-Leu, respectively. Thus, the presence of the charged residues at these positions in IGF I appears to be responsible, in part, for the lower affinity of IGF I for the type 2 IGF receptor. In addition to the alterations in affinity for the type 2 IGF receptor, the A chain mutant has a 7-fold increase in affinity for insulin receptors, and [Thr49, Ser50, Ile51]IGF I has a 4-fold lower affinity for acid-stable human serum binding protein. These data strongly suggest that specific determinants in the A region of IGF I are important for maintaining binding to the type 2 IGF receptor, and that these determinants are different from those required for maintaining high affinity for the type 1 IGF receptor.

摘要

我们利用胰岛素样生长因子(IGF)I合成基因的定点诱变技术制备了三种类似物,其中A区域的特定残基被胰岛素A链中的相应残基取代。这些类似物分别是[Ile41, Glu45, Gln46, Thr49, Ser50, Ile51, Ser53, Tyr55, Gln56]IGF I(A链突变体),其中41位残基由苏氨酸变为异亮氨酸,A区域的42至56位残基被取代;[Thr49, Ser50, Ile51]IGF I;以及[Tyr55, Gln56]IGF I。在人胎盘膜的1型IGF受体上,以及在刺激大鼠血管平滑肌细胞系A10中[3H]胸腺嘧啶掺入DNA方面,这些类似物与IGF I的效力相当。然而,A链突变体和[Thr49, Ser50, Ile51]IGF I对大鼠肝膜2型IGF受体的相对亲和力分别降低了20倍以上。相比之下,[Tyr55, Gln56]IGF I对2型IGF受体的亲和力比IGF I高7倍。IGF I中的49、50和51位残基为Phe-Arg-Ser,在IGF II中严格保守。IGF I的55和56位残基以及IGF II中的相应残基分别为Arg-Arg和Ala-Leu。因此,IGF I中这些位置上带电荷残基的存在似乎部分导致了IGF I对2型IGF受体的亲和力较低。除了对2型IGF受体亲和力的改变外,A链突变体对胰岛素受体的亲和力增加了7倍,而[Thr49, Ser50, Ile51]IGF I对酸稳定的人血清结合蛋白的亲和力降低了4倍。这些数据有力地表明,IGF I A区域中的特定决定簇对于维持与2型IGF受体的结合很重要,并且这些决定簇与维持对1型IGF受体的高亲和力所需的决定簇不同。

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