Mostafa Islam, Yoo Mi-Jeong, Zhu Ning, Geng Sisi, Dufresne Craig, Abou-Hashem Maged, El-Domiaty Maher, Chen Sixue
Department of Biology, University of FloridaGainesville, FL, USA.
Genetics Institute, University of FloridaGainesville, FL, USA.
Front Plant Sci. 2017 Apr 11;8:534. doi: 10.3389/fpls.2017.00534. eCollection 2017.
Glucosinolates (Gls) constitute a major group of natural metabolites represented by three major classes (aliphatic, indolic and aromatic) of more than 120 chemical structures. In our previous work, soluble proteins and metabolites in Arabidopsis mutants deficient of aliphatic () and indolic Gls () were analyzed. Here we focus on investigating the changes at the level of membrane proteins in these mutants. Our LC/MS-MS analyses of tandem mass tag (TMT) labeled peptides derived from the and relative to wild type resulted in the identification of 4,673 proteins, from which 2,171 are membrane proteins. Fold changes and statistical analysis showed 64 increased and 74 decreased in , while 28 increased and 17 decreased in . As to the shared protein changes between the mutants, one protein was increased and eight were decreased. Bioinformatics analysis of the changed proteins led to the discovery of three cytochromes in glucosinolate molecular network (GMN): cytochrome P450 86A7 (At1g63710), cytochrome P450 71B26 (At3g26290), and probable cytochrome c (At1g22840). CYP86A7 and CYP71B26 may play a role in hydroxyl-indolic Gls production. In addition, flavone 3'-O-methyltransferase 1 represents an interesting finding as it is likely to participate in the methylation process of the hydroxyl-indolic Gls to form methoxy-indolic Gls. The analysis also revealed additional new nodes in the GMN related to stress and defense activity, transport, photosynthesis, and translation processes. Gene expression and protein levels were found to be correlated in the , but not in the .
硫代葡萄糖苷(Gls)是一类主要的天然代谢产物,由超过120种化学结构的三大类(脂肪族、吲哚族和芳香族)组成。在我们之前的工作中,对缺乏脂肪族()和吲哚族硫代葡萄糖苷()的拟南芥突变体中的可溶性蛋白质和代谢产物进行了分析。在此,我们着重研究这些突变体中膜蛋白水平的变化。我们对来自和相对于野生型的串联质量标签(TMT)标记肽进行了液相色谱/质谱-质谱(LC/MS-MS)分析,鉴定出4673种蛋白质,其中2171种是膜蛋白。倍数变化和统计分析表明,中64种蛋白质增加,74种减少,而中28种增加,17种减少。至于突变体之间共享的蛋白质变化,一种蛋白质增加,八种减少。对变化蛋白质的生物信息学分析导致在硫代葡萄糖苷分子网络(GMN)中发现了三种细胞色素:细胞色素P450 86A7(At1g63710)、细胞色素P450 71B26(At3g26290)和可能的细胞色素c(At1g22840)。CYP86A7和CYP71B26可能在羟基吲哚硫代葡萄糖苷的产生中起作用。此外,黄酮3'-O-甲基转移酶1是一个有趣的发现,因为它可能参与羟基吲哚硫代葡萄糖苷的甲基化过程以形成甲氧基吲哚硫代葡萄糖苷。分析还揭示了GMN中与应激和防御活性、运输、光合作用和翻译过程相关的其他新节点。发现基因表达和蛋白质水平在中相关,但在中不相关。