Gowri Shankar B A, Sarani R, Michael Daliah, Mridula P, Ranjani C Vasuki, Sowmiya G, Vasundhar B, Sudha P, Jeyakanthan J, Velmurugan D, Sekar K
Bioinformatics Centre (Centre of Excellence in Structural Biology and Bio-computing), Indian Institute of Science, Bangalore, India.
J Biosci. 2007 Jun;32(4):693-704. doi: 10.1007/s12038-007-0069-1.
Ion pairs contribute to several functions including the activity of catalytic triads, fusion of viral membranes, stability in thermophilic proteins and solvent-protein interactions. Furthermore, they have the ability to affect the stability of protein structures and are also a part of the forces that act to hold monomers together. This paper deals with the possible ion pair combinations and networks in 25% and 90% non-redundant protein chains. Different types of ion pairs present in various secondary structural elements are analysed. The ion pairs existing between different subunits of multisubunit protein structures are also computed and the results of various analyses are presented in detail. The protein structures used in the analysis are solved using X-ray crystallography, whose resolution is better than or equal to 1.5 A and R-factor better than or equal to 20%. This study can, therefore, be useful for analyses of many protein functions. It also provides insights into the better understanding of the architecture of protein structure.
离子对具有多种功能,包括催化三联体的活性、病毒膜融合、嗜热蛋白的稳定性以及溶剂与蛋白质的相互作用。此外,它们能够影响蛋白质结构的稳定性,并且也是将单体结合在一起的作用力的一部分。本文研究了25%和90%非冗余蛋白质链中可能的离子对组合和网络。分析了存在于各种二级结构元件中的不同类型离子对。还计算了多亚基蛋白质结构不同亚基之间存在的离子对,并详细呈现了各种分析结果。分析中使用的蛋白质结构通过X射线晶体学解析,其分辨率优于或等于1.5埃,R因子优于或等于20%。因此,本研究对于分析许多蛋白质功能可能有用。它还为更好地理解蛋白质结构的架构提供了见解。