Hashimoto R, Fujiwara H, Higashihashi N, Enjoh-Kimura T, Terasawa H, Fujita-Yamaguchi Y, Inagaki F, Perdue J F, Sakano K
Molecular Biology Research Laboratory, Daiichi Pharmaceutical Co., Ltd., Tokyo, Japan.
J Biol Chem. 1995 Jul 28;270(30):18013-8. doi: 10.1074/jbc.270.30.18013.
To define the role of the N-terminal region of insulin-like growth factor-II (IGF-II) in its binding to insulin and IGF receptors, deletion mutants des-(1-5)-, des-(1-7)-, and des-(1-8)-recombinant (r) IGF-II, and the Gly8 for Leu substitution mutant of rIGF-II were prepared by site-directed mutagenesis, expressed in Escherichia coli, and purified. The binding affinity and mitogenic activity of these rIGF-II mutants as well as commercially available des-(1-6)-rIGF-II were analyzed. While the relative affinity of des-(1-5)- and des-(1-6)-rIGF-II for purified human insulin and IGF-I receptors remained at > or = 50% levels of that of rIGF-II, the affinity of des-(1-7)-rIGF-II decreased to approximately 10% and approximately 3%, respectively, of that of rIGF-II. When the octapeptide including Leu8 was removed prior to the Cys9-Cys47 intrachain bond, the relative affinity of this deletion mutant, des-(1-8)-rIGF-II, for these receptors dramatically decreased to < 1% of that of rIGF-II. Substituting Gly8 for Leu in rIGF-II decreased the affinity of this mutant for the IGF-I and insulin receptors to about the same extent. These results suggest that the side chains of Thr7 and Leu8 may play an important role in retaining all of the IGF-II functions. Decreases in the relative affinity for binding of the mutants to these receptors paralleled the decreases in their mitogenic potency for cultured Balb/c 3T3 cells. Although the relative affinity of des-(1-8)- or [Gly8]rIGF-II for rat IGF-II/CIM6-P (cation-independent mannose 6-phosphate) receptors was also < 1% of that of rIGF-II, the relative affinities of des-(1-5)-, des-(1-6)-, and des-(1-7)-rIGF-II for these receptors was significantly greater than that of rIGF-II. These results clearly demonstrate that Thr7 and Leu8 are important for binding to insulin and IGF-I receptors and Leu8 is critical for expression of all IGF-II functions.
为确定胰岛素样生长因子-II(IGF-II)N端区域在其与胰岛素及IGF受体结合中的作用,通过定点诱变制备了缺失突变体des-(1-5)-、des-(1-7)-和des-(1-8)-重组(r)IGF-II,以及rIGF-II的Gly8替换为Leu的突变体,在大肠杆菌中表达并纯化。分析了这些rIGF-II突变体以及市售des-(1-6)-rIGF-II的结合亲和力和促有丝分裂活性。des-(1-5)-和des-(1-6)-rIGF-II对纯化的人胰岛素和IGF-I受体的相对亲和力保持在rIGF-II的≥50%水平,而des-(1-7)-rIGF-II对这些受体的亲和力分别降至rIGF-II的约10%和约3%。当在Cys9-Cys47链内键之前去除包含Leu8的八肽时,该缺失突变体des-(1-8)-rIGF-II对这些受体的相对亲和力急剧降至rIGF-II的<1%。rIGF-II中Gly8替换为Leu使该突变体对IGF-I和胰岛素受体的亲和力降低程度大致相同。这些结果表明,Thr7和Leu8的侧链可能在维持IGF-II的所有功能中起重要作用。突变体与这些受体结合的相对亲和力降低与其对培养的Balb/c 3T3细胞的促有丝分裂能力降低平行。尽管des-(1-8)-或[Gly8]rIGF-II对大鼠IGF-II/CIM6-P(不依赖阳离子的甘露糖6-磷酸)受体的相对亲和力也<rIGF-II的1%,但des-(1-5)-、des-(1-6)-和des-(1-7)-rIGF-II对这些受体的相对亲和力显著高于rIGF-II。这些结果清楚地表明,Thr7和Leu8对与胰岛素和IGF-I受体的结合很重要,而Leu8对所有IGF-II功能的表达至关重要。