Patel Kedar G, Ng Patrick P, Kuo Chiung-Chi, Levy Shoshana, Levy Ronald, Swartz James R
Department of Chemical Engineering, Stanford University, 381 North-South Mall, Stanford, CA 94305-5025, USA.
Biochem Biophys Res Commun. 2009 Dec 18;390(3):971-6. doi: 10.1016/j.bbrc.2009.10.087. Epub 2009 Oct 21.
Antibody fragments (scFvs) fused to luciferase reporter proteins have been used as highly sensitive optical imaging probes. Gaussia princeps luciferase (GLuc) is an attractive choice for a reporter protein because it is small and bright and does not require ATP to stimulate bioluminescence-producing reactions. Both GLuc and scFv proteins contain multiple disulfide bonds, and consequently the production of active and properly folded GLuc-scFv fusions is challenging. We therefore produced both proteins individually in active form, followed by covalent coupling to produce the intended conjugate. We used an Escherichia coli-based cell-free protein synthesis (CFPS) platform to produce GLuc and scFv proteins containing non-natural amino acids (nnAAs) for subsequent conjugation by azide-alkyne click chemistry. GLuc mutants with exposed alkyne reactive groups were produced by global replacement of methionine residues in CFPS. Antibody fragment scFvs contained a single exposed azide group using a scheme for site-specific incorporation of tyrosine analogs. Incorporation of tyrosine analogs at specific sites in proteins was performed using an engineered orthogonal tRNA-tRNA synthetase pair from an archaebacterium. The unique azide and alkyne side chains in GLuc and the antibody fragment scFv facilitated conjugation by click chemistry. GLuc-scFv conjugates were shown to differentiate between cells expressing a surface target of the scFv and cells that did not carry this marker.
与荧光素酶报告蛋白融合的抗体片段(单链抗体)已被用作高灵敏度光学成像探针。高斯海萤荧光素酶(GLuc)是报告蛋白的一个有吸引力的选择,因为它体积小、发光强,且不需要ATP来刺激生物发光反应。GLuc和单链抗体蛋白都含有多个二硫键,因此生产有活性且正确折叠的GLuc-单链抗体融合蛋白具有挑战性。因此,我们分别以活性形式生产这两种蛋白,然后进行共价偶联以产生预期的缀合物。我们使用基于大肠杆菌的无细胞蛋白质合成(CFPS)平台来生产含有非天然氨基酸(nnAAs)的GLuc和单链抗体蛋白,以便随后通过叠氮化物-炔烃点击化学进行偶联。通过在CFPS中全局替换甲硫氨酸残基来产生具有暴露炔烃反应基团的GLuc突变体。抗体片段单链抗体使用酪氨酸类似物位点特异性掺入方案含有单个暴露的叠氮基团。使用来自古细菌的工程化正交tRNA-氨酰tRNA合成酶对在蛋白质的特定位点掺入酪氨酸类似物。GLuc和抗体片段单链抗体中独特的叠氮化物和炔烃侧链通过点击化学促进偶联。GLuc-单链抗体缀合物被证明能够区分表达单链抗体表面靶点的细胞和不携带该标志物的细胞。