Gyrup Claus, Oxvig Claus
Department of Molecular Biology, University of Aarhus, Gustav Wieds Vej 10C, DK-8000 Aarhus C, Denmark.
Biochemistry. 2007 Feb 20;46(7):1972-80. doi: 10.1021/bi062229i. Epub 2007 Jan 24.
The metzincin metalloproteinase pregnancy-associated plasma protein-A (PAPP-A, pappalysin-1, EC 3.4.24.79) specifically cleaves insulin-like growth factor binding protein (IGFBP)-4 and -5. Regulation of insulin-like growth factor (IGF) bioavailability through cleavage of these inhibitory binding proteins is an important mechanism for the control of growth and development of vertebrate cells. Although proteolysis of IGFBP-4 and -5 by PAPP-A has been extensively studied in many systems, quantitative analyses have been lacking. We have characterized the cleavage of its natural substrates, IGFBP-4 and -5, in the absence and presence of IGF-I or -II and determined the kinetic parameters (Km and kcat) for the different combinations of IGFBP and IGF. The rate of IGFBP-4 proteolysis is dramatically increased upon addition of IGF-I or -II. Kinetic analysis revealed that IGF-II was a more potent activator of IGFBP-4 proteolysis than IGF-I. Proteolysis of IGFBP-5 is slightly inhibited by IGF, and we find that IGF-I and -II display a similar degree of inhibition of IGFBP-5 cleavage. We show that the mechanism of IGF-modulated proteolysis of IGFBP-4 and -5 involves changes in both the recognition of substrate (Km) and the turnover rate (kcat). In addition, we have devised a novel method of revealing potential consequences of substrate modification for kinetic analysis, and we have used this method to establish that there is no apparent difference in the behavior of radiolabeled IGFBP-4 and -5 compared to the behavior of the unmodified protein substrates. We also propose experimental conditions for the proper analysis of IGFBP proteolysis, and we demonstrate their usefulness by quantitatively evaluating the effect of inhibitory compounds on the rate of proteolysis. Finally, we have compared PAPP-A to other proteinases thought to have IGFBP-4 or -5 as a substrate. This emphasizes the potential of PAPP-A to specifically and efficiently function as a regulator in the IGF system.
金属锌蛋白酶妊娠相关血浆蛋白-A(PAPP-A,妊娠特异性β1糖蛋白-1,EC 3.4.24.79)特异性裂解胰岛素样生长因子结合蛋白(IGFBP)-4和-5。通过裂解这些抑制性结合蛋白来调节胰岛素样生长因子(IGF)的生物利用度是控制脊椎动物细胞生长和发育的重要机制。尽管在许多系统中对PAPP-A裂解IGFBP-4和-5进行了广泛研究,但缺乏定量分析。我们已对其天然底物IGFBP-4和-5在有无IGF-I或-IGF-II存在的情况下的裂解情况进行了表征,并确定了IGFBP和IGF不同组合的动力学参数(Km和kcat)。添加IGF-I或-IGF-II后,IGFBP-4的蛋白水解速率显著增加。动力学分析表明,IGF-II比IGF-I更有效地激活IGFBP-4的蛋白水解。IGF对IGFBP-5的蛋白水解有轻微抑制作用,我们发现IGF-I和-IGF-II对IGFBP-5裂解的抑制程度相似。我们表明,IGF调节的IGFBP-4和-5蛋白水解机制涉及底物识别(Km)和周转速率(kcat)的变化。此外,我们设计了一种揭示底物修饰对动力学分析潜在影响的新方法,并使用该方法确定与未修饰的蛋白质底物相比,放射性标记的IGFBP-4和-5的行为没有明显差异。我们还提出了正确分析IGFBP蛋白水解的实验条件,并通过定量评估抑制性化合物对蛋白水解速率的影响来证明其有用性。最后,我们将PAPP-A与其他被认为以IGFBP-4或-5为底物的蛋白酶进行了比较。这强调了PAPP-A在IGF系统中作为特异性和有效调节剂的潜力。