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通过马来酰亚胺-巯基化学和 Sortase A 介导的连接制备定点细胞毒性蛋白缀合物。

Preparation of Site-Specific Cytotoxic Protein Conjugates via Maleimide-thiol Chemistry and Sortase A-Mediated Ligation.

机构信息

Department of Protein Engineering, Faculty of Biotechnology, University of Wroclaw; Department of Protein Biotechnology, Faculty of Biotechnology, University of Wroclaw.

Department of Protein Engineering, Faculty of Biotechnology, University of Wroclaw.

出版信息

J Vis Exp. 2021 Jan 5(167). doi: 10.3791/61918.

Abstract

Cancer is currently the second most common cause of death worldwide. The hallmark of cancer cells is the presence of specific marker proteins such as growth factor receptors on their surface. This feature enables development of highly selective therapeutics, the protein bioconjugates, composed of targeting proteins (antibodies or receptor ligands) connected to highly cytotoxic drugs by a specific linker. Due to very high affinity and selectivity of targeting proteins the bioconjugates recognize marker proteins on the cancer cells surface and utilize receptor-mediated endocytosis to reach the cell interior. Intracellular vesicular transport system ultimately delivers the bioconjugates to the lysosomes, where proteolysis separates free cytotoxic drugs from the proteinaceous core of the bioconjugates, triggering drug-dependent cancer cell death. Currently, there are several protein bioconjugates approved for cancer treatment and large number is under development or clinical trials. One of the main challenges in the generation of the bioconjugates is a site-specific attachment of the cytotoxic drug to the targeting protein. Recent years have brought a tremendous progress in the development of chemical and enzymatic strategies for protein modification with cytotoxic drugs. Here we present the detailed protocols for the site-specific incorporation of cytotoxic warheads into targeting proteins using a chemical method employing maleimide-thiol chemistry and an enzymatic approach that relies on sortase A-mediated ligation. We use engineered variant of fibroblast growth factor 2 and fragment crystallizable region of human immunoglobulin G as an exemplary targeting proteins and monomethyl auristatin E and methotrexate as model cytotoxic drugs. All the described strategies allow for highly efficient generation of biologically active cytotoxic conjugates of defined molecular architecture with potential for selective treatment of diverse cancers.

摘要

癌症目前是全球第二大常见死因。癌细胞的标志是其表面存在特定的标记蛋白,如生长因子受体。这一特征使高度选择性的治疗药物得以发展,即由靶向蛋白(抗体或受体配体)通过特定连接子与高细胞毒性药物连接而成的蛋白生物缀合物。由于靶向蛋白具有非常高的亲和力和选择性,生物缀合物能够识别癌细胞表面的标记蛋白,并利用受体介导的内吞作用进入细胞内部。细胞内囊泡运输系统最终将生物缀合物输送到溶酶体,在那里蛋白酶解将游离的细胞毒性药物与生物缀合物的蛋白核心分离,触发依赖药物的癌细胞死亡。目前,已有几种用于癌症治疗的蛋白生物缀合物获得批准,还有大量的生物缀合物正在开发或临床试验中。生物缀合物生成的主要挑战之一是将细胞毒性药物特异性地连接到靶向蛋白上。近年来,在使用细胞毒性药物对蛋白质进行化学和酶法修饰方面取得了巨大进展。在这里,我们使用马来酰亚胺-巯基化学的化学方法和依赖于 sortase A 介导的连接的酶法,展示了将细胞毒性弹头特异性地掺入靶向蛋白中的详细方案。我们使用成纤维细胞生长因子 2 的工程变体和人免疫球蛋白 G 的片段结晶区作为示例靶向蛋白,以及单甲基奥瑞他汀 E 和甲氨蝶呤作为模型细胞毒性药物。所有描述的策略都允许高效地生成具有定义分子结构的生物活性细胞毒性缀合物,具有治疗多种癌症的潜力。

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