Choi Kyung-Yi, Kyung Yoon-Joo, Lee Chul Young, Lee Dong-Hee
Department of Life Science, University of Seoul, 90 Jeonnong-dong, Seoul 130-743, Korea.
J Biochem Mol Biol. 2004 Mar 31;37(2):153-8. doi: 10.5483/bmbrep.2004.37.2.153.
The acid-labile subunit (ALS) is known to interact with the IGF binding protein (IGFBP) in the presence of insulin-like growth factors (IGFs). Studies, however, indicate that ALS forms a doublet with IGFBP3, independent of IGFs. To characterize the structural domain required for the IGF-free ALS-IGFBP3 interaction, seven recombinant human IGFBP3 mutants were generated: three deletion mutants and four site-specific mutants that had altering N-terminal regions of IGFBP3. ALS and IGFBP3 mRNAs were co-injected into Xenopus oocytes, and their products were cross-linked and immunoprecipitated using antisera against ALS or IGFBP3. Among the deletion mutants, the mutant of D40 (deleted in 11-40th amino acids) exerted no effect in the interaction with ALS, while D60 (Delta11-60) demonstrated a moderate reduction. D88 (Delta11-88), however, showed a significant decrease. In the case of site-specific mutants, the mutation that alterated the IGF binding site (codons 56 or 80) exerted a significant reduction in the interaction, whereas codons 72 or 87 showed no significant change in the interaction with ALS. The stability of the ALS-IGFBP3 interaction was analyzed according to a time-dependent mode. Consistent with the binding study, mutants on the IGF binding sites (56 or 80) consistently show a weakness in the ALS-IGFBP3 interaction when compared to the mutants that covered the non-IGF binding sites (72 or 87). This study suggests that the N-terminal of IGFBP3, especially the IGF binding site, plays an important role in interacting with ALS as well as in stabilizing the dual complex, independent of IGFs.
已知酸不稳定亚基(ALS)在胰岛素样生长因子(IGF)存在的情况下与IGF结合蛋白(IGFBP)相互作用。然而,研究表明,ALS与IGFBP3形成双峰,与IGF无关。为了表征无IGF的ALS-IGFBP3相互作用所需的结构域,生成了七种重组人IGFBP3突变体:三种缺失突变体和四种具有改变的IGFBP3 N端区域的位点特异性突变体。将ALS和IGFBP3 mRNA共注射到非洲爪蟾卵母细胞中,使用抗ALS或IGFBP3的抗血清对它们的产物进行交联和免疫沉淀。在缺失突变体中,D40(第11-40位氨基酸缺失)突变体在与ALS的相互作用中没有影响,而D60(Δ11-60)表现出适度降低。然而,D88(Δ11-88)显示出显著降低。在位点特异性突变体的情况下,改变IGF结合位点(密码子56或80)的突变在相互作用中显著降低,而密码子72或87在与ALS的相互作用中没有显著变化。根据时间依赖性模式分析了ALS-IGFBP3相互作用的稳定性。与结合研究一致,与覆盖非IGF结合位点(72或87)的突变体相比,IGF结合位点(56或80)上的突变体在ALS-IGFBP3相互作用中始终表现出较弱的相互作用。这项研究表明,IGFBP3的N端,尤其是IGF结合位点,在与ALS相互作用以及稳定二元复合物中起着重要作用,与IGF无关。