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Dependence of aptamer activity on opposed terminal extensions: improvement of light-regulation efficiency

机译:适体活性对相对的末端延伸的依赖性:调光效率的提高

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摘要

Aptamers that can be regulated with light allow precise control of protein activity in space and time and hence of biological function in general. In a previous study, we showed that the activity of the thrombin-binding aptamer HD1 can be turned off by irradiation using a light activatable ‘caged’ intramolecular antisense-domain. However, the activity of the presented aptamer in its ON state was only mediocre. Here we studied the nature of this loss in activity in detail and found that switching from 5′- to 3′-extensions affords aptamers that are even more potent than the unmodified HD1. In particular we arrived at derivatives that are now more active than the aptamer NU172 that is currently in phase 2 clinical trials as an anticoagulant. As a result, we present light-regulatable aptamers with a superior activity in their ON state and an almost digital ON/OFF behavior upon irradiation.
机译:可以用光调节的适体可以精确地控制蛋白质在空间和时间上的活性,因此通常可以控制生物学功能。在先前的研究中,我们表明可以通过使用可光激活的“笼中”分子内反义域进行辐照来关闭凝血酶结合适体HD1的活性。然而,呈现的适体在其ON状态下的活性仅中等。在这里,我们详细研究了这种活动丧失的性质,发现从5'-延伸区切换到3'-延伸区提供的适体比未修饰的HD1更有效。特别是,我们得出了比目前作为抗凝剂正在2期临床试验中的适体NU172更有效的衍生物。结果,我们提出了光可调节的适体,在其ON状态下具有优异的活性,并且在照射时具有几乎数字的ON / OFF行为。

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