College of Food Science and Engineering, Northwest A&F University, Yangling 712100, Shaanxi, People's Republic of China; College of Agronomy, Northwest A&F University, Yangling 712100, Shaanxi, People's Republic of China.
College of Agronomy, Northwest A&F University, Yangling 712100, Shaanxi, People's Republic of China.
Biochem Biophys Res Commun. 2014 Jun 13;448(4):365-71. doi: 10.1016/j.bbrc.2014.04.115. Epub 2014 May 2.
Caleosin is a common lipid-droplet surface protein, which has the ability to bind calcium. Arabidopsis (Arabidopsis thaliana) is considered a model organism in plant researches. Although there are growing researches about caleosin in the past few years, a systemic analysis of caleosins in Arabidopsis is still scarce. In this study, a comprehensive investigation of caleosins in Arabidopsis was performed by bioinformatics methods. Firstly, eight caleosins in Arabidopsis are divided into two types, L-caleosin and H-caleosin, according to their molecular weights, and these two types of caleosin have many differences in characteristics. Secondly, phylogenetic tree result indicates that L-caleosin may evolve from H-caleosin. Thirdly, duplication pattern analysis shows that segmental and tandem duplication are main reasons for Arabidopsis caleosin expansion with the equal part. Fourthly, the expression profiles of caleosins are also investigated in silico in different organs and under various stresses and hormones. In addition, based on promoter analysis, caleosin may be involved in calcium signal transduction and lipid accumulation. Thus, the classification and expression analysis of caleosin genes in Arabidopsis provide facilities to the research of phylogeny and functions in this gene family.
钙结合蛋白(Caleosin)是一种常见的脂滴表面蛋白,具有结合钙的能力。拟南芥(Arabidopsis thaliana)被认为是植物研究中的模式生物。尽管近年来对钙结合蛋白的研究越来越多,但对拟南芥中钙结合蛋白的系统分析仍然很少。本研究通过生物信息学方法对拟南芥中的钙结合蛋白进行了全面研究。首先,根据分子量将拟南芥中的 8 种钙结合蛋白分为 L-钙结合蛋白和 H-钙结合蛋白两种类型,这两种类型的钙结合蛋白在特性上有许多差异。其次,系统发育树的结果表明,L-钙结合蛋白可能是由 H-钙结合蛋白进化而来的。第三,重复模式分析表明,片段和串联重复是拟南芥钙结合蛋白扩张的主要原因,且扩张的部分相同。第四,还对钙结合蛋白在不同器官和各种胁迫和激素下的表达谱进行了计算机模拟分析。此外,基于启动子分析,钙结合蛋白可能参与钙信号转导和脂质积累。因此,拟南芥钙结合蛋白基因的分类和表达分析为该基因家族的系统发育和功能研究提供了便利。