摘要
为研究电压依赖阴离子通道(VDAC)基因在烟草根系分泌有机酸的作用,进而为了解该基因的功能和应用提供基础,以拟南芥At VDAC1(NM_110994)为搜索序列,应用电子克隆技术得到一条烟草VDAC基因全长c DNA,命名为Nt VDAC1.1。生物信息学分析表明该基因全长为1 018 bp,有着完整的开放阅读框,编码276个氨基酸。进化关系及同源性分析表明,Nt VDAC1.1与其他物种的VDAC有着较高的相似性,其中与茄科植物马铃薯三个膜孔蛋白有着很高的一致性(0.768-0.902)。功能分析显示,Nt VDAC1.1为膜孔蛋白,参与了阴离子的转运、阴离子转运调节和跨膜运输。二级和四级结构分析均表明,Nt VDAC1.1含有α-螺旋和β-折叠。氨基酸位点分析表明,该蛋白具有多种类型的修饰位点,其中的磷酸化位点说明该基因与信号转导有关,对阴离子通道活性具有调节作用。
In order to investigate the function of voltage- dependent anion channel( VDAC) gene in tobacco root secreting organic acid and provide basis for its research and application,a full- length c DNA sequence of VDAC gene,termed as Nt VDAC1. 1,was obtained using At VDAC1( NM_110994) as search probe.Bioinformatics analyses showed that the full length of Nt VDAC1. 1 was 1 018 bp,which contained a complete open reading frame and encoded 276 amino acid residues. Homology and phylogenetic relationship analyses suggested that Nt VDAC1. 1 shared high similarity with VDAC of other plant species,and the identities with three porins from Solanaceae potato were 0. 768 -0. 902. Nt VDAC1. 1 belonged to porin,which took part in anion transport,regulation of anion transport and transmembrane transport. The prediction of secondary and tertiary structure indicated that Nt VDAC1. 1 had α- helixs and β- sheets. Amino acid site analysis suggested that Nt VDAC1. 1 possessed a number of types of modification sites. These phosphorylation sites indicated that the protein might take part in plant signal transduction and regulation of anion channel activity.
出处
《山东农业科学》
2015年第11期5-11,共7页
Shandong Agricultural Sciences
基金
中国烟草总公司特色优质烟叶开发重大专项(Ts-01-2011003)