Institute of Enzymology, Hungarian Academy of Sciences, Budapest H-1113, Hungary.
J Biol Chem. 2010 Apr 16;285(16):11863-9. doi: 10.1074/jbc.M109.098541. Epub 2010 Feb 23.
C1, the first component of the complement system, is a Ca(2+)-dependent heteropentamer complex of C1q and two modular serine proteases, C1r and C1s. Current functional models assume significant flexibility of the subcomponents. Noncatalytic modules in C1r have been proposed to provide the flexibility required for function. Using a recombinant CUB2-CCP1 domain pair and the individual CCP1 module, we showed that binding of Ca(2+) induces the folding of the CUB2 domain and stabilizes its structure. In the presence of Ca(2+), CUB2 shows a compact, folded structure, whereas in the absence of Ca(2+), it has a flexible, disordered conformation. CCP1 module is Ca(2+)-insensitive. Isothermal titration calorimetry revealed that CUB2 binds a single Ca(2+) with a relatively high K(D) (430 mum). In blood, the CUB2 domain of C1r is only partially (74%) saturated by Ca(2+), therefore the disordered, Ca(2+)-free form could provide the flexibility required for C1 activation. In accordance with this assumption, the effect of Ca(2+) on the autoactivation of native, isolated C1r zymogen was proved. In the case of infection-inflammation when the local Ca(2+) concentration decreases, this property of CUB2 domain could serve as subtle means to trigger the activation of the classical pathway of complement. The CUB2 domain of C1r is a novel example for globular protein domains with marginal stability, high conformational flexibility, and proteolytic sensitivity. The physical nature of the behavior of this domain is similar to that of intrinsically unstructured proteins, providing a further example of functionally relevant ligand-induced reorganization of a polypeptide chain.
C1 是补体系统的第一个组成部分,是一个依赖 Ca(2+)的 C1q 和两个模块化丝氨酸蛋白酶(C1r 和 C1s)组成的异五聚体复合物。当前的功能模型假设亚基具有很大的灵活性。C1r 中的非催化模块被认为提供了功能所需的灵活性。我们使用重组的 CUB2-CCP1 结构域对和单个 CCP1 模块,表明 Ca(2+)的结合诱导了 CUB2 结构域的折叠并稳定了其结构。在 Ca(2+)存在下,CUB2 呈现出紧凑的折叠结构,而在 Ca(2+)不存在下,它具有灵活的无序构象。CCP1 模块对 Ca(2+)不敏感。等温滴定量热法显示 CUB2 以相对较高的 K(D)(430 mum)结合单个 Ca(2+)。在血液中,C1r 的 CUB2 结构域仅部分(74%)被 Ca(2+)饱和,因此无序的、无 Ca(2+)形式可以为 C1 激活提供所需的灵活性。根据这一假设,证明了 Ca(2+)对天然、分离的 C1r 酶原的自动激活的影响。在感染-炎症的情况下,当局部 Ca(2+)浓度降低时,CUB2 结构域的这种特性可以作为触发补体经典途径激活的微妙手段。C1r 的 CUB2 结构域是具有边缘稳定性、高构象灵活性和蛋白水解敏感性的球状蛋白结构域的新例子。该结构域行为的物理性质类似于无规卷曲蛋白质,为多肽链的功能相关配体诱导的重组提供了进一步的例子。