Department of Biochemistry and Molecular Biology, Monash University, Clayton, Victoria 3800, Australia.
J Immunol. 2012 Sep 1;189(5):2365-73. doi: 10.4049/jimmunol.1201085. Epub 2012 Aug 1.
The classical pathway of complement is crucial to the immune system, but it also contributes to inflammatory diseases when dysregulated. Binding of the C1 complex to ligands activates the pathway by inducing autoactivation of associated C1r, after which C1r activates C1s. C1s cleaves complement component C4 and then C2 to cause full activation of the system. The interaction between C1s and C4 involves active site and exosite-mediated events, but the molecular details are unknown. In this study, we identified four positively charged amino acids on the serine protease domain that appear to form a catalytic exosite that is required for efficient cleavage of C4. These residues are coincidentally involved in coordinating a sulfate ion in the crystal structure of the protease. Together with other evidence, this pointed to the involvement of sulfate ions in the interaction with the C4 substrate, and we showed that the protease interacts with a peptide from C4 containing three sulfotyrosine residues. We present a molecular model for the interaction between C1s and C4 that provides support for the above data and poses questions for future research into this aspect of complement activation.
补体经典途径对免疫系统至关重要,但当失调时也会导致炎症性疾病。C1 复合物与配体结合通过诱导相关 C1r 的自动激活来激活途径,然后 C1r 激活 C1s。C1s 切割补体成分 C4,然后切割 C2,从而导致系统的完全激活。C1s 和 C4 之间的相互作用涉及活性位点和外位介导的事件,但分子细节尚不清楚。在这项研究中,我们确定了丝氨酸蛋白酶结构域上的四个正电荷氨基酸,这些氨基酸似乎形成了一个催化外位,对于 C4 的有效切割是必需的。这些残基碰巧参与了蛋白酶晶体结构中硫酸根离子的配位。结合其他证据,这表明硫酸根离子参与了与 C4 底物的相互作用,我们还表明蛋白酶与含有三个磺基酪氨酸残基的 C4 肽相互作用。我们提出了 C1s 和 C4 之间相互作用的分子模型,该模型为上述数据提供了支持,并为补体激活这一方面的未来研究提出了问题。