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A Simple Method for Predicting Transmembrane Proteins Based on Wavelet Transform

机译:基于小波变换的跨膜蛋白预测的简单方法

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摘要

The increasing protein sequences from the genome project require theoretical methods to predict transmembrane helical segments (TMHs). So far, several prediction methods have been reported, but there are some deficiencies in prediction accuracy and adaptability in these methods. In this paper, a method based on discrete wavelet transform (DWT) has been developed to predict the number and location of TMHs in membrane proteins. PDB coded as 1KQG is chosen as an example to describe the prediction process by this method. 80 proteins with known 3D structure from Mptopo database are chosen at random as data sets (including 325 TMHs) and 80 sequences are divided into 13 groups according to their function and type. TMHs prediction is carried out for each group of membrane protein sequences and obtain satisfactory result. To verify the feasibility of this method, 80 membrane protein sequences are treated as test sets, 308 TMHs can be predicted and the prediction accuracy is 96.3%. Compared with the main prediction results of seven popular prediction methods, the obtained results indicate that the proposed method in this paper has higher prediction accuracy.
机译:基因组计划中越来越多的蛋白质序列需要理论方法来预测跨膜螺旋区段(TMH)。迄今为止,已经报道了几种预测方法,但是这些方法在预测准确性和适应性方面存在一些不足。本文提出了一种基于离散小波变换(DWT)的方法来预测膜蛋白中TMH的数量和位置。以编码为1KQG的PDB为例来描述此方法的预测过程。从Mptopo数据库中随机选择80种具有已知3D结构的蛋白质作为数据集(包括325个TMH),并将80个序列根据其功能和类型分为13组。对每组膜蛋白序列进行TMHs预测,并获得满意的结果。为了验证该方法的可行性,将80个膜蛋白序列作为测试集,可以预测308个TMH,预测准确性为96.3%。与七种流行预测方法的主要预测结果相比,所得结果表明本文提出的方法具有较高的预测精度。

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