Jaquinod Michel, Villiers Florent, Kieffer-Jaquinod Sylvie, Hugouvieux Véronique, Bruley Christophe, Garin Jérôme, Bourguignon Jacques
Laboratoire d'Etude de la dynamique des Protéomes, Institut de Recherches en Technologies et Sciences pour le Vivant (iRTSV), Commissariat à l'Energie Atomique (CEA), France.
Mol Cell Proteomics. 2007 Mar;6(3):394-412. doi: 10.1074/mcp.M600250-MCP200. Epub 2006 Dec 6.
To better understand the mechanisms governing cellular traffic, storage of various metabolites, and their ultimate degradation, Arabidopsis thaliana vacuole proteomes were established. To this aim, a procedure was developed to prepare highly purified vacuoles from protoplasts isolated from Arabidopsis cell cultures using Ficoll density gradients. Based on the specific activity of the vacuolar marker alpha-mannosidase, the enrichment factor of the vacuoles was estimated at approximately 42-fold with an average yield of 2.1%. Absence of significant contamination by other cellular compartments was validated by Western blot using antibodies raised against specific markers of chloroplasts, mitochondria, plasma membrane, and endoplasmic reticulum. Based on these results, vacuole preparations showed the necessary degree of purity for proteomics study. Therefore, a proteomics approach was developed to identify the protein components present in both the membrane and soluble fractions of the Arabidopsis cell vacuoles. This approach includes the following: (i) a mild oxidation step leading to the transformation of cysteine residues into cysteic acid and methionine to methionine sulfoxide, (ii) an in-solution proteolytic digestion of very hydrophobic proteins, and (iii) a prefractionation of proteins by short migration by SDS-PAGE followed by analysis by liquid chromatography coupled to tandem mass spectrometry. This procedure allowed the identification of more than 650 proteins, two-thirds of which copurify with the membrane hydrophobic fraction and one-third of which copurifies with the soluble fraction. Among the 416 proteins identified from the membrane fraction, 195 were considered integral membrane proteins based on the presence of one or more predicted transmembrane domains, and 110 transporters and related proteins were identified (91 putative transporters and 19 proteins related to the V-ATPase pump). With regard to function, about 20% of the proteins identified were known previously to be associated with vacuolar activities. The proteins identified are involved in ion and metabolite transport (26%), stress response (9%), signal transduction (7%), and metabolism (6%) or have been described to be involved in typical vacuolar activities, such as protein and sugar hydrolysis. The subcellular localization of several putative vacuolar proteins was confirmed by transient expression of green fluorescent protein fusion constructs.
为了更好地理解控制细胞运输、各种代谢物储存及其最终降解的机制,构建了拟南芥液泡蛋白质组。为此,开发了一种程序,使用Ficoll密度梯度从拟南芥细胞培养物分离的原生质体中制备高度纯化的液泡。根据液泡标记物α-甘露糖苷酶的比活性,液泡的富集系数估计约为42倍,平均产量为2.1%。通过使用针对叶绿体、线粒体、质膜和内质网的特异性标记物产生的抗体进行蛋白质印迹,验证了不存在其他细胞区室的显著污染。基于这些结果,液泡制备物显示出蛋白质组学研究所需的纯度。因此,开发了一种蛋白质组学方法来鉴定拟南芥细胞液泡的膜和可溶性部分中存在的蛋白质成分。该方法包括以下步骤:(i)一个温和的氧化步骤,导致半胱氨酸残基转化为半胱氨酸磺酸,甲硫氨酸转化为甲硫氨酸亚砜;(ii)对非常疏水的蛋白质进行溶液内蛋白酶消化;(iii)通过SDS-PAGE短距离迁移对蛋白质进行预分级,然后通过液相色谱-串联质谱分析。该程序能够鉴定出650多种蛋白质,其中三分之二与膜疏水部分共纯化,三分之一与可溶性部分共纯化。在从膜部分鉴定出的416种蛋白质中,基于存在一个或多个预测的跨膜结构域,195种被认为是整合膜蛋白,并且鉴定出110种转运蛋白和相关蛋白(91种假定的转运蛋白和19种与V-ATPase泵相关的蛋白)。关于功能,约20%鉴定出的蛋白质先前已知与液泡活动相关。鉴定出的蛋白质参与离子和代谢物运输(26%)、应激反应(9%)、信号转导(7%)和代谢(6%),或者已被描述参与典型的液泡活动,如蛋白质和糖的水解。通过绿色荧光蛋白融合构建体的瞬时表达,证实了几种假定的液泡蛋白的亚细胞定位。