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Engineered production of cancer targeting peptide (CTP)-containing C-1027 in Streptomyces globisporus and biological evaluation

机译:球孢链霉菌中含有癌靶向肽(CTP)的C-1027的工程化生产和生物学评估

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摘要

Conjugation of cancer targeting peptides (CTPs) with small molecular therapeutics has emerged as a promising strategy to deliver potent (but typically nonspecific) cytotoxic agents selectively to cancer cells. Here we report the engineered production of a CTP (NGR)-containing C-1027 and evaluation of its activity against selected cancer cell lines. C-1027 is an enediyne chromoprotein produced by Streptomyces globisporus, consisting of an apo-protein (CagA) and an enediyne chromophore (C-1027). NGR is a CTP that targets CD13 in tumor vasculature. S. globisporus SB1026, a recombinant strain engineered to encode CagA with the NGR sequence fused at its C-terminus, directly produces the NGR-containing C-1027 that is equally active as the native C-1027. Our results demonstrate the feasibility to produce CTP-containing enediyne chromoproteins by metabolic pathway engineering and microbial fermentation and will inspire efforts to engineer other CTP-containing drug binding proteins for targeted delivery.
机译:癌症靶向肽(CTP)与小分子疗法的结合已成为一种有前途的策略,可以选择性地将有效的(但通常是非特异性的)细胞毒性剂选择性地递送至癌细胞。在这里,我们报告了含有CTP(NGR)的C-1027的工程化生产及其对所选癌细胞系的活性评估。 C-1027是由双链链霉菌产生的烯二炔色蛋白,由脱辅基蛋白(CagA)和烯二酮生色团(C-1027)组成。 NGR是一种靶向肿瘤脉管系统中CD13的CTP。 globisporus SB1026是一种重组菌株,工程改造为编码CagA,在其C末端融合了NGR序列,它直接产生了与天然C-1027具有同等活性的含NGR的C-1027。我们的结果证明了通过代谢途径工程和微生物发酵生产含CTP的烯二炔色蛋白的可行性,并将激发人们努力设计其他含CTP的药物结合蛋白以进行靶向递送。

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