Gaidamauskas Ervinas, Gyrup Claus, Boldt Henning B, Schack Vivien R, Overgaard Michael T, Laursen Lisbeth S, Oxvig Claus
Department of Molecular Biology and Genetics, University of Aarhus, DK-8000 Aarhus, Denmark.
Biochim Biophys Acta. 2013 Mar;1830(3):2701-9. doi: 10.1016/j.bbagen.2012.11.002.
Pregnancy-associated plasma protein-A (PAPP-A) is a local regulator of insulin-like growth factor (IGF) bioavailability in physiological systems, but many structural and functional aspects of the metzincin metalloproteinase remain to be elucidated. PAPP-A cleaves IGF binding protein (IGFBP)-4 and IGFBP-5. Cleavage of IGFBP-4, but not IGFBP-5, depends on the binding of IGF before proteolysis by PAPP-A can occur. The paralogue PAPP-A2 has two substrates among the six IGFBPs: IGFBP-3 and IGFBP-5.
Sets of chimeric proteins between IGFBP-4 and -5, and IGFBP-3 and -5 were constructed to investigate the structural requirements for IGF modulation. At the proteinase level, we investigated the importance of individual acidic amino acids positioned in the proteolytic domain of PAPP-A for proteolytic activity against IGFBP-4 and -5. Interaction between PAPP-A and its substrates was analyzed by surface plasmon resonance.
We provide data suggesting that the C-terminal domain of the IGFBPs is responsible for IGF-dependent modulation of access to the scissile bond. Loss or reduction of IGFBP proteolysis by PAPP-A was observed upon mutation of residues positioned in the unique 63-residue stretch separating the zinc and Met-turn motifs, and in the short sequence following the Met-turn methionine. A model of the proteolytic domain of PAPP-A suggests the presence of structural calcium ions in the C-terminal subdomain, implicated in IGFBP substrate interactions.
Detailed knowledge of interactions between PAPP-A and its substrates is required to understand the modulatory role of PAPP-A on IGF receptor stimulation.
妊娠相关血浆蛋白-A(PAPP-A)是生理系统中胰岛素样生长因子(IGF)生物利用度的局部调节剂,但这种金属锌蛋白酶的许多结构和功能方面仍有待阐明。PAPP-A可裂解胰岛素样生长因子结合蛋白(IGFBP)-4和IGFBP-5。IGFBP-4的裂解(而非IGFBP-5的裂解)取决于IGF的结合,然后PAPP-A才能进行蛋白水解。旁系同源物PAPP-A2在六种IGFBP中有两种底物:IGFBP-3和IGFBP-5。
构建了IGFBP-4与-5以及IGFBP-3与-5之间的嵌合蛋白组,以研究IGF调节的结构要求。在蛋白酶水平上,我们研究了位于PAPP-A蛋白水解结构域中的单个酸性氨基酸对IGFBP-4和-5蛋白水解活性的重要性。通过表面等离子体共振分析PAPP-A与其底物之间的相互作用。
我们提供的数据表明,IGFBP的C末端结构域负责IGF依赖性调节对可裂解键的接近。当位于锌基序和Met-转角基序之间独特的63个残基延伸段以及Met-转角甲硫氨酸之后的短序列中的残基发生突变时,观察到PAPP-A对IGFBP蛋白水解的丧失或减少。PAPP-A蛋白水解结构域的模型表明,C末端亚结构域中存在结构钙离子,这与IGFBP底物相互作用有关。
需要详细了解PAPP-A与其底物之间的相互作用,以理解PAPP-A对IGF受体刺激的调节作用。