Thielens N M, Enrie K, Lacroix M, Jaquinod M, Hernandez J F, Esser A F, Arlaud G J
Laboratoire d'Enzymologie Moléculaire, Institut de Biologie Structurale Jean-Pierre Ebel, 41 Avenue des Martyrs, 38027 Grenoble Cedex 1, France.
J Biol Chem. 1999 Apr 2;274(14):9149-59. doi: 10.1074/jbc.274.14.9149.
The Ca2+-dependent interaction between complement serine proteases C1r and C1s is mediated by their alpha regions, encompassing the major part of their N-terminal CUB-EGF-CUB (where EGF is epidermal growth factor) module array. In order to define the boundaries of the C1r domain(s) responsible for Ca2+ binding and Ca2+-dependent interaction with C1s and to assess the contribution of individual modules to these functions, the CUB, EGF, and CUB-EGF fragments were expressed in eucaryotic systems or synthesized chemically. Gel filtration studies, as well as measurements of intrinsic Tyr fluorescence, provided evidence that the CUB-EGF pair adopts a more compact conformation in the presence of Ca2+. Ca2+-dependent interaction of intact C1r with C1s was studied using surface plasmon resonance spectroscopy, yielding KD values of 10.9-29.7 nM. The C1r CUB-EGF pair bound immobilized C1s with a higher KD (1.5-1.8 microM), which decreased to 31.4 nM when CUB-EGF was used as the immobilized ligand and C1s was free. Half-maximal binding was obtained at comparable Ca2+ concentrations ranging from 5 microM with intact C1r to 10-16 microM for C1ralpha and CUB-EGF. The isolated CUB and EGF fragments or a CUB + EGF mixture did not bind C1s. These data demonstrate that the C1r CUB-EGF module pair (residues 1-175) is the minimal segment required for high affinity Ca2+ binding and Ca2+-dependent interaction with C1s and indicate that Ca2+ binding induces a more compact folding of the CUB-EGF pair.
补体丝氨酸蛋白酶C1r和C1s之间的钙离子依赖性相互作用由它们的α区域介导,该区域包含其N端CUB-EGF-CUB(其中EGF是表皮生长因子)模块阵列的主要部分。为了确定负责钙离子结合以及与C1s发生钙离子依赖性相互作用的C1r结构域边界,并评估各个模块对这些功能的贡献,CUB、EGF和CUB-EGF片段在真核系统中表达或化学合成。凝胶过滤研究以及内在酪氨酸荧光测量提供了证据,表明在钙离子存在下CUB-EGF对呈现出更紧密的构象。使用表面等离子体共振光谱研究了完整C1r与C1s的钙离子依赖性相互作用,得到的解离常数(KD)值为10.9 - 29.7 nM。C1r CUB-EGF对与固定化的C1s结合时KD值较高(1.5 - 1.8 μM),当CUB-EGF用作固定化配体且C1s游离时,该值降至31.4 nM。在相当的钙离子浓度下获得半数最大结合,完整C1r时为5 μM,C1rα和CUB-EGF时为10 - 16 μM。分离的CUB和EGF片段或CUB + EGF混合物不与C1s结合。这些数据表明,C1r CUB-EGF模块对(第1 - 175位氨基酸残基)是高亲和力钙离子结合以及与C1s发生钙离子依赖性相互作用所需的最小片段,并表明钙离子结合诱导CUB-EGF对发生更紧密的折叠。