Kim Eun Ji, Holthuizen P Elly, Kim Jaebong, Park Jung Han Yoon
Division of Life Sciences, Hallym University, 1 Okchon Dong, Chunchon 200-702, Republic of Korea.
Growth Horm IGF Res. 2005 Feb;15(1):64-71. doi: 10.1016/j.ghir.2004.11.005. Epub 2005 Jan 21.
Caco-2 cells produce both mature 7500 M(r) and higher M(r) forms of IGF-II (pro IGF-II - pIGF-II) and pIGF-II production is much higher than that of mature IGF-II (mIGF-II). The present study was performed to determine whether overexpression of mIGF-II or pIGF-II stimulates Caco-2 cell growth. A pIGF-II cDNA construct that expresses IGF-II including the E-domain was prepared by cloning a 1250 bp BamH I-Apa I human prepro IGF-II cDNA fragment downstream of the CMV promoter in pcDNA3. To create a mIGF-II cDNA construct which does not express the E-domain, two stop codons were inserted right after the glutamine residue of the D-peptide by site directed mutagenesis utilizing the pIGF-II cDNA expression construct as the template. Caco-2 cells were stably transfected with the mIGF-II or pIGF-II construct. Secretion of the mature and higher M(r) forms of IGF-II into serum-free medium was higher in clones transfected with the mIGF-II or pIGF-II expression constructs compared to vector controls. Both IGF-II clonal cell lines grew faster than the control Caco-2 cells until six days of culture. However, at day 12 the final cell density of the pIGF-II expressing cells was higher than that of the mature IGF-II clones. Western blot analysis of cell lysates at day 8 through day 12 with anti-IGF-I receptor (IGF-IR) beta subunit antibody revealed that the mature IGF-IR levels were lower in both IGF-II overexpressing cell lines compared to the vector control clone. Furthermore, it was shown that at day 12 the IGF-IR levels were significantly lower in mIGF-II clones than in pIGF-II clones. These results indicate that mIGF-II is more effective in down-regulating the IGF-IR than pIGF-II. We propose that overexpression of mIGF-II causes down-regulation of the IGF-IR, leading to growth arrest of Caco-2 cells.
Caco-2细胞可产生成熟的7500 M(r) 及更高M(r) 形式的胰岛素样生长因子-II(前胰岛素样生长因子-II - pIGF-II),且pIGF-II的产生远高于成熟胰岛素样生长因子-II(mIGF-II)。本研究旨在确定mIGF-II或pIGF-II的过表达是否会刺激Caco-2细胞生长。通过将一个1250 bp的BamH I - Apa I人胰岛素样生长因子-II前原cDNA片段克隆到pcDNA3中巨细胞病毒启动子的下游,制备了一种表达包含E结构域的胰岛素样生长因子-II的pIGF-II cDNA构建体。为了构建一个不表达E结构域且不表达mIGF-II的cDNA构建体,以pIGF-II cDNA表达构建体为模板,通过定点诱变在D肽的谷氨酰胺残基之后立即插入两个终止密码子。用mIGF-II或pIGF-II构建体稳定转染Caco-2细胞。与载体对照相比,用mIGF-II或pIGF-II表达构建体转染的克隆中,成熟的和更高M(r) 形式的胰岛素样生长因子-II分泌到无血清培养基中的量更高。在培养6天之前,两种胰岛素样生长因子-II克隆细胞系的生长速度均快于对照Caco-2细胞。然而,在第12天,表达pIGF-II的细胞的最终细胞密度高于成熟胰岛素样生长因子-II克隆。用抗胰岛素样生长因子-I受体(IGF-IR)β亚基抗体对第8天至第12天的细胞裂解物进行蛋白质印迹分析显示,与载体对照克隆相比,两种过表达胰岛素样生长因子-II的细胞系中成熟IGF-IR的水平均较低。此外,结果表明,在第12天,mIGF-II克隆中的IGF-IR水平显著低于pIGF-II克隆。这些结果表明,mIGF-II在下调IGF-IR方面比pIGF-II更有效。我们提出,mIGF-II的过表达会导致IGF-IR的下调,从而导致Caco-2细胞生长停滞。