Abstract

Identification and characterization of anion channel genes in plants represent a goal for a better understanding of their central role in cell signaling, osmoregulation, nutrition, and metabolism. Though channel activities have been well characterized in plasma membrane by electrophysiology, the corresponding molecular entities are little documented. Indeed, the hydrophobic protein equipment of plant plasma membrane still remains largely unknown, though several proteomic approaches have been reported. To identify new putative transport systems, we developed a new proteomic strategy based on mass spectrometry analyses of a plasma membrane fraction enriched in hydrophobic proteins. We produced from Arabidopsis cell suspensions a highly purified plasma membrane fraction and characterized it in detail by immunological and enzymatic tests. Using complementary methods for the extraction of hydrophobic proteins and mass spectrometry analyses on mono-dimensional gels, about 100 proteins have been identified, 95% of which had never been found in previous proteomic studies. The inventory of the plasma membrane proteome generated by this approach contains numerous plasma membrane integral proteins, one-third displaying at least four transmembrane segments. The plasma membrane localization was confirmed for several proteins, therefore validating such proteomic strategy. An in silico analysis shows a correlation between the putative functions of the identified proteins and the expected roles for plasma membrane in transport, signaling, cellular traffic, and metabolism. This analysis also reveals 10 proteins that display structural properties compatible with transport functions and will constitute interesting targets for further functional studies.

Highlights

  • Identification and characterization of anion channel genes in plants represent a goal for a better understanding of their central role in cell signaling, osmoregulation, nutrition, and metabolism

  • The solubility of membrane proteins in 2-D gels has been improved with the use of new zwitterionic detergents during sample preparation [17], and combined with the development of mass spectrometry analysis, many new proteins were identified in plasma membrane (PM) from bacteria [18], human cells [1], and Arabidopsis plants [19]

  • Protein Extraction—PM fractions were isolated from Arabidopsis cell suspensions using the two-phase partitioning method [36]

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Summary

Introduction

Identification and characterization of anion channel genes in plants represent a goal for a better understanding of their central role in cell signaling, osmoregulation, nutrition, and metabolism. To identify new putative transport systems, we developed a new proteomic strategy based on mass spectrometry analyses of a plasma membrane fraction enriched in hydrophobic proteins. An in silico analysis shows a correlation between the putative functions of the identified proteins and the expected roles for plasma membrane in transport, signaling, cellular traffic, and metabolism. The solubility of membrane proteins in 2-D gels has been improved with the use of new zwitterionic detergents during sample preparation [17], and combined with the development of mass spectrometry analysis, many new proteins were identified in PM from bacteria [18], human cells [1], and Arabidopsis plants [19]. Complexity of the membrane fractions to be analyzed can be reduced using different strategies such as chloroform/methanol extraction [30], reverse-phase chromatography [31], or blue natives gels [32]

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