Wang C L, Huang M, Wesson C A, Birdsell D C, Trumble W R
Department of Bacteriology/Biochemistry, University of Idaho, Moscow 83844.
Protein Eng. 1994 May;7(5):715-22. doi: 10.1093/protein/7.5.715.
A recombinant gene fusion was created and cloned using a previously constructed gene encoding a monodomain IgG Fc binding protein and the gene coding for bacterial alkaline phosphatase. The construct was able to express and secrete a fusion protein that exhibited both IgG binding and alkaline phosphatase enzymatic activities. Greater than 60% of the protein demonstrating both biological activities was detected from periplasmic space preparations. Nanogram concentrations of the Fc binding--alkaline phosphatase fusion protein allowed primary IgG antibody detection without the use of conjugated secondary antibodies. Removal of the domain coding for alkaline phosphatase resulted in decreased resistance of the protein to proteolytic degradation and the loss of IgG Fc binding ability. Using affinity-purified fusion protein, the specificity of binding to IgG, IgM and IgA was examined; binding was strong to IgG and barely detectable against IgM or IgA. Affinity for binding of the fusion protein to IgG (Kd = 6.7 x 10(-8) M) was determined to be equal to or greater than previously reported for protein A.
利用先前构建的编码单结构域IgG Fc结合蛋白的基因和编码细菌碱性磷酸酶的基因,创建并克隆了一个重组基因融合体。该构建体能够表达和分泌一种融合蛋白,该融合蛋白同时具有IgG结合活性和碱性磷酸酶酶活性。从周质空间制剂中检测到超过60%的蛋白同时具有这两种生物学活性。纳克浓度的Fc结合型碱性磷酸酶融合蛋白无需使用偶联二抗即可检测初级IgG抗体。去除编码碱性磷酸酶的结构域导致该蛋白对蛋白水解降解的抗性降低,并丧失IgG Fc结合能力。使用亲和纯化的融合蛋白,检测了其与IgG、IgM和IgA结合的特异性;与IgG的结合很强,而与IgM或IgA的结合几乎检测不到。融合蛋白与IgG结合的亲和力(Kd = 6.7×10⁻⁸ M)被确定为等于或大于先前报道的蛋白A的亲和力。