Plasma membrane microdomains regulate turnover of transport proteins in yeast

Author:

Grossmann Guido1,Malinsky Jan2,Stahlschmidt Wiebke1,Loibl Martin1,Weig-Meckl Ina1,Frommer Wolf B.3,Opekarová Miroslava4,Tanner Widmar1

Affiliation:

1. Institute of Cell Biology and Plant Physiology, University of Regensburg, 93053 Regensburg, Germany

2. Institute of Experimental Medicine

3. Department of Plant Biology, Carnegie Institution for Science, Stanford, CA 94305

4. Institute of Microbiology, Academy of Sciences of the Czech Republic, 14220 Prague, Czech Republic

Abstract

In this study, we investigate whether the stable segregation of proteins and lipids within the yeast plasma membrane serves a particular biological function. We show that 21 proteins cluster within or associate with the ergosterol-rich membrane compartment of Can1 (MCC). However, proteins of the endocytic machinery are excluded from MCC. In a screen, we identified 28 genes affecting MCC appearance and found that genes involved in lipid biosynthesis and vesicle transport are significantly overrepresented. Deletion of Pil1, a component of eisosomes, or of Nce102, an integral membrane protein of MCC, results in the dissipation of all MCC markers. These deletion mutants also show accelerated endocytosis of MCC-resident permeases Can1 and Fur4. Our data suggest that release from MCC makes these proteins accessible to the endocytic machinery. Addition of arginine to wild-type cells leads to a similar redistribution and increased turnover of Can1. Thus, MCC represents a protective area within the plasma membrane to control turnover of transport proteins.

Publisher

Rockefeller University Press

Subject

Cell Biology

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