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Designed Metal-ATCUN Derivatives: Redox- and Non-redox-Based Applications Relevant for Chemistry Biology and Medicine

机译:设计的金属atcun衍生物:氧化还原和非氧化还原的应用适用于化学生物学和医学

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摘要

The designed “ATCUN” motif (amino-terminal copper and nickel binding site) is a replica of naturally occurring ATCUN site found in many proteins/peptides, and an attractive platform for multiple applications, which include nucleases, proteases, spectroscopic probes, imaging, and small molecule activation. ATCUN motifs are engineered at periphery by conjugation to recombinant proteins, peptides, fluorophores, or recognition domains through chemically or genetically, fulfilling the needs of various biological relevance and a wide range of practical usages. This chemistry has witnessed significant growth over the last few decades and several interesting ATCUN derivatives have been described. The redox role of the ATCUN moieties is also an important aspect to be considered. The redox potential of designed M-ATCUN derivatives is modulated by judicious choice of amino acid (including stereochemistry, charge, and position) that ultimately leads to the catalytic efficiency. In this context, a wide range of M-ATCUN derivatives have been designed purposefully for various redox- and non-redox-based applications, including spectroscopic probes, target-based catalytic metallodrugs, inhibition of amyloid-β toxicity, and telomere shortening, enzyme inactivation, biomolecules stitching or modification, next-generation antibiotic, and small molecule activation.
机译:设计的“ATCUN”主题(氨基 - 末端铜和镍粘结位点)是在许多蛋白质/肽中发现的天然存在的ATCUN遗址的复制品,以及多种应用的有吸引力的平台,包括核酸酶,蛋白酶,光谱探针,成像,成像和小分子激活。 ATCUN图案通过化学或遗传地通过化学或遗传来缀合来设计以重组蛋白,肽,荧光团或识别结构域,满足各种生物相关性和广泛的实际用途的需求。这一化学在过去几十年中有显着的增长,已经描述了几个有趣的ATCUN衍生品。 ATCUN部分的氧化还原作用也是所考虑的一个重要方面。设计的M-ATCUN衍生物的氧化还原潜力由最终导致催化效率的明智的氨基酸(包括立体化学,电荷和位置)来调节。在这种情况下,广泛的M-ATCUN衍生物针对各种氧化还原和非氧化还原的应用设计,包括光谱探针,基于靶催化金属化药物,抑制淀粉样蛋白β毒性,并且端粒缩短,酶灭活,生物分子缝合或修饰,下一代抗生素和小分子活化。

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