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首页> 外文期刊>Journal of Bioinformatics and Computational Biology >TRANSMEMBRANE STRUCTURE PREDICTIONS WITH HYDROPATHY INDEX/CHARGE TWO-DIMENSIONAL TRAJECTORIES OF STOCHASTIC DYNAMICAL SYSTEMS
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TRANSMEMBRANE STRUCTURE PREDICTIONS WITH HYDROPATHY INDEX/CHARGE TWO-DIMENSIONAL TRAJECTORIES OF STOCHASTIC DYNAMICAL SYSTEMS

机译:随机动力学系统水化指数/电荷二维轨迹的跨膜结构预测

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摘要

A novel algorithm is proposed for predicting transmembrane protein secondary structure from two-dimensional vector trajectories consisting of a hydropathy index and formal charge of a test amino acid sequence using stochastic dynamical system models. Two prediction problems are discussed. One is the prediction of transmembrane region counts; another is that of transmembrane regions, i.e. predicting whether or not each amino acid belongs to a transmembrane region. The prediction accuracies, using a collection of well-characterized transmembrane protein sequences and benchmarking sequences, suggest that the proposed algorithm performs reasonably well. An experiment was performed with a glutamate transporter homologue from Pyrococcus horikoshii. The predicted transmembrane regions of the five human glutamate transporter sequences and observations based on the computed likelihood are reported.
机译:提出了一种新的算法,利用随机动力系统模型,从亲水性指数和测试氨基酸序列的形式电荷组成的二维矢量轨迹预测跨膜蛋白的二级结构。讨论了两个预测问题。一种是跨膜区域计数的预测;另一种是跨膜区域计数的预测。另一个是跨膜区域的氨基酸,即预测每个氨基酸是否属于跨膜区域。预测准确性,使用了一组很好表征的跨膜蛋白序列和基准序列,表明所提出的算法表现合理。用得自火球菌的谷氨酸转运蛋白同系物进行了实验。报告了五个人谷氨酸转运蛋白序列的预测跨膜区和基于计算的可能性的观察结果。

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