Jiang Zhi, Liang Zhongjie, Shen Bairong, Hu Guang
Center for Systems Biology, Soochow University, Suzhou 215006, China; Department of Biochemistry and Molecular Biology, School of Medicine, Soochow University, Suzhou 215123, China.
Center for Systems Biology, Soochow University, Suzhou 215006, China.
Biomed Res Int. 2015;2015:792904. doi: 10.1155/2015/792904. Epub 2015 Dec 31.
Pleckstrin homology (PH) domains share low sequence identities but extremely conserved structures. They have been found in many proteins for cellular signal-dependent membrane targeting by binding inositol phosphates to perform different physiological functions. In order to understand the sequence-structure relationship and binding specificities of PH domains, quantum mechanical (QM) calculations and sequence-based combined with structure-based binding analysis were employed in our research. In the structural aspect, the binding specificities were shown to correlate with the hydropathy characteristics of PH domains and electrostatic properties of the bound inositol phosphates. By comparing these structure properties with sequence-based profiles of physicochemical properties, PH domains can be classified into four functional subgroups according to their binding specificities and affinities to inositol phosphates. The method not only provides a simple and practical paradigm to predict binding specificities for functional genomic research but also gives new insight into the understanding of the basis of diseases with respect to PH domain structures.
普列克底物蛋白同源(PH)结构域的序列一致性较低,但结构却极为保守。人们已在许多蛋白质中发现了这类结构域,它们通过结合肌醇磷酸参与细胞信号依赖的膜靶向过程,从而执行不同的生理功能。为了理解PH结构域的序列 - 结构关系及结合特异性,我们的研究采用了量子力学(QM)计算以及基于序列并结合基于结构的结合分析方法。在结构方面,研究表明结合特异性与PH结构域的亲水性特征以及所结合肌醇磷酸的静电性质相关。通过将这些结构特性与基于序列的物理化学性质图谱进行比较,可根据PH结构域对肌醇磷酸的结合特异性和亲和力将其分为四个功能亚组。该方法不仅为功能基因组研究预测结合特异性提供了一种简单实用的范例,还为从PH结构域结构角度理解疾病发生机制提供了新的视角。