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Structure prediction and validation of an affibody engineered for cell-specific nucleic acid targeting

机译:工程学用于细胞特异性核酸靶向的亲和体的结构预测和验证

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摘要

Cell-penetrating peptides comprising cloned epitopes that contribute to membrane transduction, DNA-binding and cell targeting functions are known to facilitate nucleic acid delivery. Using the ITASSER software, we predicted the 3-D structure of a well characterized and efficient transfecting cell-penetrating peptide, namely TAT-Mu and its derivative TAT-Mu-AF protein that harbors a targeting ligand, the HER2-binding affibody. Our model predicts TAT-Mu-AF fusion protein as primarily comprising α-helices. The affibody in TAT-Mu-AF is predicted as a 3-helical domain that is distinct from the TAT-Mu domain. Its positioning in three-dimensional structure is oriented in a manner that possibly favors interactions with receptor and facilitates transport to the target site. The linker region between TAT-Mu and the affibody is also predicted as a helix that is likely to stabilize the overall fold of the TAT-Mu-AF complex. Further, the evaluation of secondary structure of the designed TAT-Mu-AF fusion protein by circular dichroism is in support of our predictions.
机译:已知包含有助于膜转导,DNA结合和细胞靶向功能的克隆表位的细胞穿透肽可促进核酸递送。使用ITASSER软件,我们预测了特征明确且高效转染细胞的肽,即TAT-Mu及其衍生的TAT-Mu-AF蛋白的3D结构,该蛋白具有靶向配体HER2结合亲和体。我们的模型预测TAT-Mu-AF融合蛋白主要包含α-螺旋。 TAT-Mu-AF中的亲和体被预测为不同于TAT-Mu域的3螺旋域。其在三维结构中的定位以可能有利于与受体相互作用并促进向靶位点转运的方式定向。 TAT-Mu和亲和体之间的接头区域也被预测为一个螺旋,可能稳定TAT-Mu-AF复合物的整体折叠。此外,通过圆二色性评估设计的TAT-Mu-AF融合蛋白的二级结构也支持了我们的预测。

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