Hayat Sikander, Walter Peter, Park Yungki, Helms Volkhard
Center for Bioinformatics, Saarland University, Germany.
J Bioinform Comput Biol. 2011 Feb;9(1):43-65. doi: 10.1142/s0219720011005240.
We present BTMX (Beta barrel TransMembrane eXposure), a computational method to predict the exposure status (i.e. exposed to the bilayer or hidden in the protein structure) of transmembrane residues in transmembrane beta barrel proteins (TMBs). BTMX predicts the exposure status of known TM residues with an accuracy of 84.2% over 2,225 residues and provides a confidence score for all predictions. Predictions made are in concert with the fact that hydrophobic residues tend to be more exposed to the bilayer. The biological relevance of the input parameters is also discussed. The highest prediction accuracy is obtained when a sliding window comprising three residues with similar C(α)-C(β) vector orientations is employed. The prediction accuracy of the BTMX method on a separate unseen non-redundant test dataset is 78.1%. By employing out-pointing residues that are exposed to the bilayer, we have identified various physico-chemical properties that show statistically significant differences between the beta strands located at the oligomeric interfaces compared to the non-oligomeric strands. The BTMX web server generates colored, annotated snake-plots as part of the prediction results and is available under the BTMX tab at http://service.bioinformatik.uni-saarland.de/tmx-site/. Exposure status prediction of TMB residues may be useful in 3D structure prediction of TMBs.
我们提出了BTMX(β桶跨膜暴露)方法,这是一种用于预测跨膜β桶蛋白(TMB)中跨膜残基暴露状态(即暴露于双层膜或隐藏于蛋白质结构中)的计算方法。BTMX对2225个已知跨膜残基的暴露状态预测准确率达84.2%,并为所有预测提供置信度评分。预测结果与疏水残基往往更倾向于暴露于双层膜这一事实相符。我们还讨论了输入参数的生物学相关性。当采用包含三个具有相似C(α)-C(β)向量方向残基的滑动窗口时,可获得最高预测准确率。BTMX方法在一个单独的未见非冗余测试数据集上的预测准确率为78.1%。通过使用暴露于双层膜的外向残基,我们确定了位于寡聚界面的β链与非寡聚链相比在多种物理化学性质上存在统计学显著差异。BTMX网络服务器会生成彩色、带注释的蛇形图作为预测结果的一部分,可在http://service.bioinformatik.uni-saarland.de/tmx-site/的BTMX标签下获取。TMB残基暴露状态预测可能对TMB的三维结构预测有用。