Towards Precision Engineering of Canonical Polyketide Synthase Domains: Recent Advances and Future Prospects

C. Bayly, Vikramaditya G. Yadav
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引用次数: 21

Abstract

Modular polyketide synthases (mPKSs) build functionalized polymeric chains, some of which have become blockbuster therapeutics. Organized into repeating clusters (modules) of independently-folding domains, these assembly-line-like megasynthases can be engineered by introducing non-native components. However, poor introduction points and incompatible domain combinations can cause both unintended products and dramatically reduced activity. This limits the engineering and combinatorial potential of mPKSs, precluding access to further potential therapeutics. Different regions on a given mPKS domain determine how it interacts both with its substrate and with other domains. Within the assembly line, these interactions are crucial to the proper ordering of reactions and efficient polyketide construction. Achieving control over these domain functions, through precision engineering at key regions, would greatly expand our catalogue of accessible polyketide products. Canonical mPKS domains, given that they are among the most well-characterized, are excellent candidates for such fine-tuning. The current minireview summarizes recent advances in the mechanistic understanding and subsequent precision engineering of canonical mPKS domains, focusing largely on developments in the past year.
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典型聚酮合酶结构域的精密工程研究进展与展望
模块化聚酮合成酶(mPKSs)构建功能化聚合物链,其中一些已成为重磅治疗药物。组织成独立折叠域的重复簇(模块),这些装配线一样的巨型合酶可以通过引入非本地组件来设计。然而,糟糕的引入点和不兼容的领域组合会导致意想不到的产品和显著减少的活动。这限制了mpks的工程和组合潜力,阻碍了获得进一步的潜在治疗方法。给定mPKS结构域上的不同区域决定了它如何与底物和其他结构域相互作用。在装配线中,这些相互作用对于反应的正确顺序和有效的聚酮构建至关重要。通过在关键区域进行精密工程,实现对这些域功能的控制,将大大扩展我们可获得的聚酮产品目录。考虑到典型的mPKS域是最具特征的,它们是这种微调的极好候选者。当前的迷你综述总结了最近在典型mPKS域的机制理解和随后的精确工程方面的进展,主要集中在过去一年的发展。
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