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首页> 外文期刊>ACS Synthetic Biology >DNA-Directed Control of Enzyme-Inhibitor Complex Formation: A Modular Approach to Reversibly Switch Enzyme Activity
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DNA-Directed Control of Enzyme-Inhibitor Complex Formation: A Modular Approach to Reversibly Switch Enzyme Activity

机译:DNA定向控制的酶抑制剂复合物的形成:可逆地转换酶活性的模块化方法。

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摘要

DNA-templated reversible assembly of an enzyme inhibitor complex is presented as a new and highly modular approach to control enzyme activity. TEM1-beta-lactamase and its inhibitor protein BLIP were conjugated to different oligonucleotides, resulting in enzyme inhibition in the presence of template strand. Formation of a rigid dsDNA linker upon addition of a complementary target strand disrupts the enzyme inhibitor complex and results in the restoration of enzyme activity, enabling detection of as little as 2 fmol DNA. The noncovalent assembly of the complex allows easy tuning of target and template strands without changing the oligonucleotide-functionalized enzyme and inhibitor domains. Using a panel of eight different template sequences, restoration of enzyme activity was only observed in the presence of the target viral DNA sequence. The use of stable, well-characterized protein domains and the intrinsic modularity of our system should allow easy integration with DNA/RNA-based logic circuits for applications in biomedicine and molecular diagnostics.
机译:DNA模板的酶抑制剂复合物的可逆装配是控制酶活性的一种新型且高度模块化的方法。将TEM1-β-内酰胺酶及其抑制剂蛋白BLIP与不同的寡核苷酸偶联,从而在模板链存在的情况下导致酶抑制。添加互补靶链后形成刚性dsDNA接头会破坏酶抑制剂复合物,并导致酶活性恢复,从而可检测低至2 fmol DNA。复合物的非共价装配使目标链和模板链易于调节,而无需改变寡核苷酸功能化的酶和抑制剂域。使用一组八个不同的模板序列,仅在目标病毒DNA序列存在的情况下才观察到酶活性的恢复。使用稳定,特征明确的蛋白质结构域以及我们系统的固有模块性,应该可以轻松地将其与基于DNA / RNA的逻辑电路相集成,以用于生物医学和分子诊断。

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