Jiang Shaohua H, Wang Jufang F, Xu Rong, Liu Yanjun J, Wang Xiaoning N, Cao Jie, Zhao Ping, Shen Yijun J, Yang Tong, Yang Hua, Jia Jiaan A, Chen Qiuli L, Pan Wei
Department of Microbiology, Second Military Medical University, Shanghai, China.
DNA Cell Biol. 2008 Aug;27(8):423-31. doi: 10.1089/dna.2007.0708.
In our previous study, a kind of novel hybrid immunoglobulin (Ig)-binding proteins (IBPs) was obtained with the characteristic structure of alternately arranged Finegoldia magna (formerly Peptostreptococcus magnus) protein L (P. magnus protein L, PpL) B3 domain (B3) and Staphylococcal protein A (SpA) D domain (D). In this study, two representative molecules of these novel proteins, LD3 (B3-D-B3) and LD5 (B3-D-B3-D-B3) (LD3/5), showed substantially higher affinity for IgG-F(ab')2, IgM, and IgA than 4L (B3-B3-B3-B3) or SpA, which were also demonstrated by surface plasmon resonance detection. Further, LD5 showed much stronger binding to single-chain Fv (scFv) KM38 (V(H)3-V(kappa)I) than to KM41 (V(H)1-V(kappa)III) or KM36 (V(H)3-V(kappa)III). Competitive inhibition studies showed that 4L alone or in combination with SpA (4L + SpA) was a weaker inhibitor than LD3/5 in inhibiting LD3/5's binding to IgG-F(ab')2, IgM, or IgA. The computer modeling suggested that the B3-D arrangement in LD3/5 could simultaneously bind to V(H)3 and V(kappa). Thus, our results indicated for the first time that alternate arrangement of B3 and D domains creates synergistic double-site binding to V(H)3 and V(kappa) regions of fragment of antigen binding. The different competitive inhibition pattern of binding of LD5 to scFv KM38 by 4L + SpA suggested strict use of antibody conformation for this simultaneous double-site binding. The demonstration of this novel binding property would promote to achieve the designed hybrid IBPs for useful immunological applications.
在我们之前的研究中,获得了一种新型杂合免疫球蛋白(Ig)结合蛋白(IBP),其具有交替排列的巨大芬戈尔德菌(原大消化链球菌)蛋白L(大消化链球菌蛋白L,PpL)B3结构域(B3)和葡萄球菌蛋白A(SpA)D结构域(D)的特征性结构。在本研究中,这些新型蛋白的两个代表性分子LD3(B3-D-B3)和LD5(B3-D-B3-D-B3)(LD3/5)对IgG-F(ab')2、IgM和IgA的亲和力明显高于4L(B3-B3-B3-B3)或SpA,表面等离子体共振检测也证实了这一点。此外,LD5与单链Fv(scFv)KM38(V(H)3-V(kappa)I)的结合比与KM41(V(H)1-V(kappa)III)或KM36(V(H)3-V(kappa)III)的结合要强得多。竞争性抑制研究表明,单独的4L或与SpA联合使用(4L + SpA)在抑制LD3/5与IgG-F(ab')2、IgM或IgA的结合方面比LD3/5弱。计算机建模表明,LD3/5中的B3-D排列可同时结合V(H)3和V(kappa)。因此,我们的结果首次表明,B3和D结构域的交替排列可产生与抗原结合片段的V(H)3和V(kappa)区域的协同双位点结合。4L + SpA对LD5与scFv KM38结合具有不同的竞争性抑制模式,这表明这种同时的双位点结合严格依赖抗体构象。这种新型结合特性的证明将有助于实现设计用于有用免疫应用的杂合IBP。