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采用凝胶电泳和 LC-MS/MS 技术的大豆质膜蛋白在渗透胁迫下的比较分析。

Comparative analysis of soybean plasma membrane proteins under osmotic stress using gel-based and LC MS/MS-based proteomics approaches.

机构信息

Graduate School of Life and Environmental Science, University of Tsukuba, Tsukuba, Japan.

出版信息

Proteomics. 2010 May;10(10):1930-45. doi: 10.1002/pmic.200900632.

Abstract

To study the soybean plasma membrane proteome under osmotic stress, two methods were used: a gel-based and a LC MS/MS-based proteomics method. Two-day-old seedlings were subjected to 10% PEG for 2 days. Plasma membranes were purified from seedlings using a two-phase partitioning method and their purity was verified by measuring ATPase activity. Using the gel-based proteomics, four and eight protein spots were identified as up- and downregulated, respectively, whereas in the nanoLC MS/MS approach, 11 and 75 proteins were identified as up- and downregulated, respectively, under PEG treatment. Out of osmotic stress responsive proteins, most of the transporter proteins and all proteins with high number of transmembrane helices as well as low-abundance proteins could be identified by the LC MS/MS-based method. Three homologues of plasma membrane H(+)-ATPase, which are transporter proteins involved in ion efflux, were upregulated under osmotic stress. Gene expression of this protein was increased after 12 h of stress exposure. Among the identified proteins, seven proteins were mutual in two proteomics techniques, in which calnexin was the highly upregulated protein. Accumulation of calnexin in plasma membrane was confirmed by immunoblot analysis. These results suggest that under hyperosmotic conditions, calnexin accumulates in the plasma membrane and ion efflux accelerates by upregulation of plasma membrane H(+)-ATPase protein.

摘要

为了研究渗透胁迫下大豆质膜蛋白质组,我们使用了两种方法:凝胶基和 LC-MS/MS 蛋白质组学方法。将 2 天龄的幼苗用 10%PEG 处理 2 天。采用双相分配法从幼苗中提取质膜,并通过测量 ATP 酶活性来验证其纯度。通过凝胶基蛋白质组学,分别鉴定出 4 个和 8 个蛋白点为上调和下调表达,而在纳升 LC-MS/MS 方法中,分别鉴定出 11 个和 75 个蛋白为上调和下调表达。在渗透胁迫响应蛋白中,通过 LC-MS/MS 方法可以鉴定出大多数转运蛋白和具有高跨膜螺旋数以及低丰度的所有蛋白。三种质膜 H(+)-ATP 酶同源物是参与离子外排的转运蛋白,在渗透胁迫下上调。该蛋白的基因表达在应激暴露 12 小时后增加。在鉴定出的蛋白质中,有 7 种蛋白质在两种蛋白质组学技术中是共同的,其中钙连蛋白是高度上调的蛋白质。通过免疫印迹分析证实钙连蛋白在质膜中的积累。这些结果表明,在高渗条件下,钙连蛋白在质膜中积累,通过上调质膜 H(+)-ATP 酶蛋白加速离子外排。

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