Waschütza G, Dengler U, Villmann C, Böttinger H, Otto B
Fraunhofer Institut für Grenzflächen und Bioverfahrenstechnik (IGB), Abteilung Gentechnologie, Hannover, Germany.
Eur J Biochem. 1998 Sep 1;256(2):303-9. doi: 10.1046/j.1432-1327.1998.2560303.x.
The receptor-binding AB loop of recombinant human interferon-gamma (IFN-gamma) has multiple contacts with the extracellular part of the IFN-gamma receptor a chain (IFN-gammaRalpha). We explored the possible length of truncated AB loops and their conformations by molecular modelling. Deletions of two amino acids at the tip of the loop were tolerated in the model without van der Waals collisions of the AB loop with helix F. Based on these modelling results, two deletion mutants were constructed by overlap-extension PCR mutagenesis: des-(A23, D24)-IFN-gamma and des-(N25, G26)-IFN-gamma. Both mutations were tolerated by the folding pattern of recombinant human IFN-gamma, as proved by CD spectroscopy. The stability of both mutants against cosolvent-induced unfolding was equal to that of wild-type IFN-gamma. In contrast to the biophysical similarities of wild-type and mutant IFN-gamma proteins, the biological activities of both mutants dropped significantly. Antiviral activity and human leucocyte antigen (HLA)-DR induction of des-(N25, G26)-IFN-gamma was 10% that of wild-type activity. des-(A23, D24)-IFN-gamma had only 1% remaining activity. Receptor-binding experiments confirmed that both deletions had a negative influence on the affinity of recombinant human IFN-gamma to its cellular receptor. We conclude from this combined molecular modelling and mutagenesis experiments, that the reduced flexibility of the truncated AB loop abrogates the possibility of the formation of a 3(10) helix in the receptor-bound state as observed in the X-ray structure of the IFN-gammaRalpha-IFN-gamma complex.
重组人干扰素-γ(IFN-γ)的受体结合AB环与IFN-γ受体α链(IFN-γRα)的细胞外部分有多个接触点。我们通过分子建模探索了截短的AB环的可能长度及其构象。在模型中,环末端缺失两个氨基酸是可以耐受的,且AB环与F螺旋之间不存在范德华碰撞。基于这些建模结果,通过重叠延伸PCR诱变构建了两个缺失突变体:des-(A23, D24)-IFN-γ和des-(N25, G26)-IFN-γ。圆二色光谱证明,两种突变均被重组人IFN-γ的折叠模式所耐受。两种突变体对共溶剂诱导的去折叠的稳定性与野生型IFN-γ相当。与野生型和突变型IFN-γ蛋白的生物物理相似性相反,两种突变体的生物学活性均显著下降。des-(N25, G26)-IFN-γ的抗病毒活性和人白细胞抗原(HLA)-DR诱导活性仅为野生型活性的10%。des-(A23, D24)-IFN-γ仅剩余1%的活性。受体结合实验证实,两种缺失均对重组人IFN-γ与其细胞受体的亲和力产生负面影响。我们从这个结合分子建模和诱变实验得出结论,截短的AB环柔韧性降低,消除了在IFN-γRα-IFN-γ复合物的X射线结构中观察到的受体结合状态下形成3(10)螺旋的可能性。