Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
J Am Chem Soc. 2012 Oct 31;134(43):18089-100. doi: 10.1021/ja307974e. Epub 2012 Oct 19.
Calprotectin (CP) is an antimicrobial protein produced and released by neutrophils that inhibits the growth of pathogenic microorganisms by sequestering essential metal nutrients in the extracellular space. In this work, spectroscopic and thermodynamic metal-binding studies are presented to delineate the zinc-binding properties of CP. Unique optical absorption and EPR spectroscopic signatures for the interfacial His(3)Asp and His(4) sites of human calprotectin are identified by using Co(II) as a spectroscopic probe. Zinc competition titrations employing chromophoric Zn(II) indicators provide a 2:1 Zn(II):CP stoichiometry, confirm that the His(3)Asp and His(4) sites of CP coordinate Zn(II), and reveal that the Zn(II) affinity of both sites is calcium-dependent. The calcium-insensitive Zn(II) competitor ZP4 affords dissociation constants of K(d1) = 133 ± 58 pM and K(d2) = 185 ± 219 nM for CP in the absence of Ca(II). These values decrease to K(d1) ≤ 10 pM and K(d2) ≤ 240 pM in the presence of excess Ca(II). The K(d1) and K(d2) values are assigned to the His(3)Asp and His(4) sites, respectively. In vitro antibacterial activity assays indicate that the metal-binding sites and Ca(II)-replete conditions are required for CP to inhibit the growth of both Gram-negative and -positive bacteria. Taken together, these data provide a working model whereby calprotectin responds to physiological Ca(II) gradients to become a potent Zn(II) chelator in the extracellular space.
钙卫蛋白(CP)是一种由中性粒细胞产生和释放的抗菌蛋白,通过在细胞外空间隔离必需的金属营养物质来抑制病原微生物的生长。在这项工作中,通过使用 Co(II) 作为光谱探针,提出了光谱和热力学金属结合研究来描绘 CP 的锌结合特性。通过使用 Co(II) 作为光谱探针,确定了人钙卫蛋白界面 His(3)Asp 和 His(4) 位点的独特光学吸收和 EPR 光谱特征。锌竞争滴定实验采用显色 Zn(II) 指示剂提供了 CP 的 2:1 Zn(II):CP 化学计量比,证实 CP 的 His(3)Asp 和 His(4) 位点与 Zn(II)配位,并揭示了两个位点的 Zn(II)亲和力均依赖于钙。钙不敏感的 Zn(II)竞争物 ZP4 在不存在 Ca(II)的情况下,CP 的解离常数 K(d1)为 133 ± 58 pM,K(d2)为 185 ± 219 nM。在存在过量 Ca(II)的情况下,这些值降低至 K(d1)≤10 pM 和 K(d2)≤240 pM。K(d1)和 K(d2)值分别分配给 His(3)Asp 和 His(4)位点。体外抗菌活性测定表明,金属结合位点和富含 Ca(II)的条件是 CP 抑制革兰氏阴性和阳性细菌生长所必需的。综上所述,这些数据提供了一个工作模型,即钙卫蛋白响应生理 Ca(II)梯度,在细胞外空间成为一种有效的 Zn(II)螯合剂。