首页> 外文会议>Conference on biochemical and molecular engineering >DEVELOPMENT OF SENSITIVE ANTIGEN-DETECTION SYSTEM USING PHOTOACTIVATABLE ANTIBODY FC-BINDING PROTEIN CAPABLE OF INTRODUCING ORIENTED ANTIBODY
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DEVELOPMENT OF SENSITIVE ANTIGEN-DETECTION SYSTEM USING PHOTOACTIVATABLE ANTIBODY FC-BINDING PROTEIN CAPABLE OF INTRODUCING ORIENTED ANTIBODY

机译:利用能导入定向抗体的可光活化抗体FC结合蛋白开发敏感抗原检测系统

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The photoactivatable antibody Fc-binding protein (PFcBP) allows oriented antibody (Ab) immobilization on various surfaces. Previously, we developed a system for producing the PFcBP containing photo-methionine (pMet) in E. coli, which can induce the covalent crosslinking to the Ab-Fc region, by engineering of methionyl-tRNA synthetase and FcBP derived from Protein G (1). In this study, we improved the photo-crosslinking efficiency by multipoint mutagenesis of PFcBP. and optimized the Ab immobilization process. The mutant PFcBP with 7-point substitutions showed the 25-30% enhanced photo-crosslinking efficiency as compared that with 4-point substitutions. The PFcBPs were immobilized onto the solid surfaces using the bifunctional crosslinkers with NHS and maleimide groups, and the Abs were then photo-crosslinked to the PFcBPs upon UV irradiation. The longer spacer arm length of the crosslinker was critical for immobilization of 1xPFcBP with a single Ab-Fc binding domain, but less critical for immobilization of 2xPFcBP with two domains. We also conjugated the PFcBP to the fluorescent beads, and subsequently photo-crosslinked detection Abs upon UV irradiation. Finally, we developed a cassette system capable of introducing capture and detection Abs with orientation onto the PFcBP immobilized chips and fluorescent beads, respectively, and demonstrated the effectiveness of the system in the detection of antigens in sera. We also first prepared the Ab-FcBP conjugates by direct photo-crosslinking of Abs and PFcBPs. After removing free PFcBP by gel filtration, the conjugates were immobilized onto the maleimide-activated surface. This process allowed more sensitive antigen detection than the sequential Ab-immobilization process.
机译:光活化抗体Fc结合蛋白(PFcBP)可以将定向抗体(Ab)固定在各种表面上。以前,我们开发了一种在大肠杆菌中生产包含光蛋氨酸(pMet)的PFcBP的系统,该系统可通过对蛋氨酸tRNA合成酶和源自蛋白G的FcBP进行工程改造来诱导与Ab-Fc区的共价交联(1 )。在这项研究中,我们通过PFcBP的多点诱变提高了光交联效率。并优化了Ab固定过程。与4点取代相比,具有7点取代的突变体PFcBP显示出25-30%的增强的光交联效率。使用具有NHS和马来酰亚胺基团的双功能交联剂将PFcBPs固定在固体表面上,然后在UV照射下将Abs光交联到PFcBPs上。交联剂的更长间隔臂长度对于用单个Ab-Fc结合结构域固定1xPFcBP至关重要,而对于用两个结构域固定2xPFcBP则不那么关键。我们还将PFcBP偶联到荧光珠上,随后在紫外线照射下进行光交联检测Abs。最后,我们开发了一种盒式系统,该系统能够分别将捕获和检测具有方向的Abs引入固定在PFcBP上的芯片和荧光珠上,并证明了该系统在检测血清抗原中的有效性。我们还首先通过Abs和PFcBPs的直接光交联制备了Ab-FcBP共轭物。通过凝胶过滤除去游离的PFcBP后,将缀合物固定在马来酰亚胺活化的表面上。与顺序的Ab固定过程相比,此过程允许更灵敏的抗原检测。

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