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首页> 外文期刊>Bioorganic and Medicinal Chemistry Letters >Beta-lactam-based approach for the chemical programming of aldolase antibody 38C2.
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Beta-lactam-based approach for the chemical programming of aldolase antibody 38C2.

机译:基于β-内酰胺的醛缩酶38C2抗体化学编程方法。

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Irreversible chemical programming of monoclonal aldolase antibody (mAb) 38C2 has been accomplished with beta-lactam-equipped targeting modules. A model study was first performed with beta-lactam conjugated to biotin. This conjugate efficiently and selectively modified the catalytic site lysine (LysH93) of mAb 38C2. We then conjugated a beta-lactam to a cyclic-RGD peptide to chemically program mAb 38C2 to target integrin receptors alpha(v)beta(3) and alpha(v)beta(5). The chemically programmed antibody bound specifically to the isolated integrin receptor proteins as well as the integrins expressed on human melanoma cells. This approach provides an efficient and versatile solution to irreversible chemical programming of aldolase antibodies.
机译:配备有β-内酰胺的靶向模块已完成了单克隆醛缩酶38C2的不可逆化学编程。首先用结合生物素的β-内酰胺进行模型研究。该缀合物有效且选择性地修饰了mAb 38C2的催化位点赖氨酸(LysH93)。然后,我们将β-内酰胺偶联到环状RGD肽上,以化学方法将mAb 38C2编程为靶向整联蛋白受体alpha(v)beta(3)和alpha(v)beta(5)。化学编程的抗体与分离的整联蛋白受体蛋白以及在人黑素瘤细胞上表达的整联蛋白特异性结合。该方法为醛缩酶抗体的不可逆化学编程提供了一种有效且通用的解决方案。

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