Sohnle P G, Hunter M J, Hahn B, Chazin W J
Research Service, Veterans Affairs Medical Center, Milwaukee, WI 53295, USA.
J Infect Dis. 2000 Oct;182(4):1272-5. doi: 10.1086/315810. Epub 2000 Sep 5.
Recombinant calprotectin, consisting of 2 individual peptide chains also called migration inhibitory factor-related protein (MRP)-8 and MRP14, was tested for antimicrobial activity in a Candida albicans growth inhibition assay. Both chains contain HEXXH zinc-binding sites and might be expected to manifest zinc-reversible, antimicrobial activity similar to that of native calprotectin. When tested alone, neither MRP8 nor MRP14 showed activity in the Candida growth assay. A synthetic 20-amino acid peptide containing the HEXXH sequence of MRP14, along with a nearby HHH sequence, was also inactive in this assay. However, equimolar concentrations of MRP8 and MRP14 demonstrated a potent growth inhibitory effect that was reversible by 30 microM zinc. Truncated MRP14 (missing the C-terminal GHHHKPGLGEGTP tail) used in combination with MRP8 demonstrated zinc-reversible activity that was somewhat less than that with complete MRP14. These results suggest that intact calprotectin, consisting of a heterodimer of MRP8 and MRP14, is necessary to form a zinc-binding site capable of inhibiting microbial growth.
重组钙卫蛋白由两条单独的肽链组成,也被称为迁移抑制因子相关蛋白(MRP)-8和MRP14,在白色念珠菌生长抑制试验中对其抗菌活性进行了测试。两条链都含有HEXXH锌结合位点,可能预期会表现出与天然钙卫蛋白类似的锌可逆抗菌活性。单独测试时,MRP8和MRP14在念珠菌生长试验中均未显示出活性。一种含有MRP14的HEXXH序列以及附近HHH序列的合成20氨基酸肽在该试验中也无活性。然而,等摩尔浓度的MRP8和MRP14表现出强大的生长抑制作用,且这种作用可被30微摩尔锌逆转。与MRP8联合使用的截短型MRP14(缺失C末端GHHHKPGLGEGTP尾)表现出锌可逆活性,但其活性略低于完整的MRP14。这些结果表明,由MRP8和MRP14异二聚体组成的完整钙卫蛋白对于形成能够抑制微生物生长的锌结合位点是必要的。