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Thrombin-aptamer recognition: a revealed ambiguity

机译:凝血酶-适体的识别:明显的模糊性

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Aptamers are structured oligonucleotides that recognize molecular targets and can function as direct protein inhibitors. The best-known example is the thrombin-binding aptamer, TBA, a single-stranded 15-mer DNA that inhibits the activity of thrombin, the key enzyme of coagulation cascade. TBA folds as a G-quadruplex structure, as proved by its NMR structure. The X-ray structure of the complex between TBA and human alpha-thrombin was solved at 2.9-A resolution, but did not provide details of the aptamer conformation and the interactions with the protein molecule. TBA is rapidly processed by nucleases. To improve the properties of TBA, a number of modified analogs have been produced. In particular, a modified TBA containing a 5'-5' polarity inversion site, mTBA, has higher stability and higher affinity toward thrombin with respect to TBA, although it has a lower inhibitory activity. We present the crystal structure of the thrombin-mTBA complex at 2.15-A resolution; the resulting model eventually provides a clear picture of thrombin-aptamers interaction, and also highlights the structural bases of the different properties of TBA and mTBA. Our findings open the way for a rational design of modified aptamers with improved potency as anticoagulant drugs.
机译:适体是识别分子靶标并可以充当直接蛋白抑制剂的结构化寡核苷酸。最著名的例子是凝血酶结合适体TBA,这是一种单链15-mer DNA,可抑制凝血酶(凝血级联的关键酶)的活性。如其NMR结构所证实的,TBA折叠为G-四链体结构。 TBA和人α-凝血酶之间的复合物的X射线结构以2.9-A的分辨率被解析,但未提供适体构象以及与蛋白质分子相互作用的详细信息。 TBA被核酸酶快速加工。为了改善TBA的性质,已经生产了许多修饰的类似物。特别地,相对于TBA,含有5'-5'极性反转位点mTBA的修饰的TBA尽管具有较低的抑制活性,但具有更高的稳定性和对凝血酶的亲和力。我们以2.15-A的分辨率呈现凝血酶-mTBA复合物的晶体结构。最终的模型最终提供了凝血酶与适体相互作用的清晰图像,并突出了TBA和mTBA不同性质的结构基础。我们的发现为合理设计改良的适体作为抗凝药物开辟了道路。

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