标题: 以蛋白质序列物化特性为特征的蛋白质激Kinase-Specific磷酸化位置预测方法与分析
Prediction and Analysis of Identifying Protein Kinase-Specific Phosphorylation Sites Based on the Features of Physicochemical Properties of Sequences
作者: 黄慧玲
Hunag Hui-Ling
国立交通大学生物科技学系(所)
关键字: 物化特性;蛋白质激?磷酸化;基因演算法;溶剂可接触性;蛋白质序列;预测方法;Physicochemical properties;kinase-specific phosphorylation;genetic algorithms;relative surface area of solvent accessibility;protein sequence;prediction method.
公开日期: 2010
摘要: 本计画“以蛋白质序列物化特性为特征的蛋白质激酶磷酸化位置预测方法与分析”旨在提
出一套高效能的智慧型基因演算法来撷取蛋白质序列物化特性做为特征,例用支持向量回归方
法来预测蛋白质相对溶剂可接触性(RSA,代表蛋白质上某一氨基酸和溶剂接触程度),并例用支
持向量机与物化特性及RSA 预测值来预测蛋白质激酶磷酸化位置。一般结合处是在蛋白质的
表面,因此氨基酸位于表面程度与氨基酸的物化特性有相关,也是预测蛋白质残基溶剂可接触
性的重要特性。本计画提出一个二阶段探勘与分析序列物化特性来设计利用溶剂可接触性面积
辅助预测磷酸化发生位置的方法。由于蛋白质序列物化特性的可解读性高,故可分析RSA 与
磷酸化的物化特性差异性。本计划将特别以实验室验证磷酸化发生的位置的蛋白质序列-瞬时
感受电位第四号TRPV4 做为分析标的物,作一预测系统以提供验证。
The one-year project, prediction and analysis of identifying protein kinase-specific
phosphorylation sites based on the features of physicochemical properties of sequences, aims to
develop a set of high-performance intelligent genetic algorithms for mining physicochemical
properties of sequences as features to design two prediction methods. The first method uses support
vector regression with the physicochemical features to predict relative surface area (RSA) of solvent
accessibility. The second method uses support vector machine with the physicochemical features to
predict protein kinase-specific phosphorylation sites. The RSA value plays an important role in
developing explicit models for aiding prediction of the phosphorylation sites. Therefore, the project
proposes a two-step prediction method using the predicted RSA value of step 1 as an additional
important feature to predict phosphorylation sites. Due to the high interpretability of
physicochemical properties as features, the study will analyze the similarity and difference of
physicochemical properties to understand the mechanism of phosphorylation. Furthermore, the
project would develop a prediction platform to verify known proteins with phosphorylation sites,
such as transient receptor potential vanilloid subfamily member 4 (TRPV4).
官方说明文件#: NSC99-2221-E009-137
URI: http://hdl.handle.net/11536/100065
https://www.grb.gov.tw/search/planDetail?id=2118552&docId=338958
显示于类别:Research Plans


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