Emory University School of Medicine, Atlanta, GA, USA.
Blood. 2011 Mar 17;117(11):3190-8. doi: 10.1182/blood-2010-09-307074. Epub 2011 Jan 7.
A point mutation leading to amino acid substitution N1922S in the A3 domain of factor VIII (fVIII) results in moderate to severe hemophilia A. A heterologous expression system comparing N1922S-fVIII and wild-type fVIII (wt-fVIII) demonstrated similar specific coagulant activities but poor secretion of N1922S-fVIII. Immunocytochemical analysis revealed that intracellular levels of N1922S-fVIII were similar to those of wt-fVIII. The specific activity of intracellular N1922S-fVIII was 10% of that of wt-fVIII, indicating the presence of large amounts of a nonfunctional N1922S-fVIII-folding intermediate. wt-fVIII colocalized with both endoplasmic reticulum (ER)- and Golgi-resident proteins. In contrast, N1922S-fVIII colocalized only with ER-resident proteins, indicating a block in transit from the ER to the Golgi. A panel of conformation-dependent monoclonal antibodies was used to determine native or nonnative folding of N1922S-fVIII. Intracellular N1922S-fVIII but not secreted N1922S-fVIII displayed abnormal folding in the A3 and C1 domains, indicating that the A1, A2, and C2 domains fold independently into antigenically intact tertiary structures, but that folding is stalled in the mutant A3 and its contiguous C1 domain. In summary, the N1922S substitution results in poor secretion of a functional protein, and the domain-specific defect in folding and intracellular trafficking of N1922S-fVIII is a novel mechanism for secretion defects leading to hemophilia A.
A 点突变导致因子 VIII(fVIII)A3 结构域中的氨基酸取代 N1922S,导致中度至重度血友病 A。比较 N1922S-fVIII 和野生型 fVIII(wt-fVIII)的异源表达系统显示出相似的特异性凝血活性,但 N1922S-fVIII 的分泌较差。免疫细胞化学分析显示,N1922S-fVIII 的细胞内水平与 wt-fVIII 相似。细胞内 N1922S-fVIII 的比活性为 wt-fVIII 的 10%,表明存在大量无功能的 N1922S-fVIII 折叠中间产物。wt-fVIII 与内质网(ER)和高尔基体驻留蛋白共定位。相比之下,N1922S-fVIII 仅与 ER 驻留蛋白共定位,表明从 ER 到高尔基体的运输受阻。一组构象依赖性单克隆抗体用于确定 N1922S-fVIII 的天然或非天然折叠。细胞内 N1922S-fVIII 而不是分泌的 N1922S-fVIII 在 A3 和 C1 结构域显示出异常折叠,表明 A1、A2 和 C2 结构域独立折叠成抗原完整的三级结构,但突变的 A3 及其连续的 C1 结构域的折叠停滞。总之,N1922S 取代导致功能性蛋白分泌不良,并且 N1922S-fVIII 的折叠和细胞内运输的结构域特异性缺陷是导致血友病 A 的分泌缺陷的新机制。