Corrected and Republished from: Activation Status-Coupled Transient S-Acylation Determines Membrane Partitioning of a Plant Rho-Related GTPase

Author:

Sorek Nadav1,Poraty Limor1,Sternberg Hasana1,Buriakovsky Ella1,Bar Einat2,Lewinsohn Efraim2,Yalovsky Shaul1ORCID

Affiliation:

1. School of Plant Sciences and Food Security, Tel Aviv University, Ramat Aviv, Tel Aviv, Israel

2. Department of Field and Vegetable Crops, Agricultural Research Organization, Newe Ya'ar Reseach Center, Ramat Yishay, Israel

Abstract

ABSTRACT ROPs or RACs are plant Rho-related GTPases implicated in the regulation of a multitude of signaling pathways that function at the plasma membrane via posttranslational lipid modifications. The relationships between ROP activation status and membrane localization has not been established. Here, we show that endogenous ROPs, as well as a transgenic His 6 -green fluorescent protein (GFP)- Arabidopsis thaliana ROP6 (AtROP6) fusion protein, were partitioned between Triton X-100-soluble and -insoluble membranes. In contrast, the His 6 -GFP-Atrop6 CA activated mutant accumulated exclusively in detergent-resistant membranes. GDP induced accumulation of ROPs in Triton-soluble membranes, whereas GTPγS induced accumulation of ROPs in detergent-resistant membranes. Recombinant wild-type and constitutively active AtROP6 proteins were purified from Arabidopsis plants, and in turn, their lipids were cleaved and analyzed by gas chromatography-coupled mass spectrometry. In Triton-soluble membranes, the wild-type AtROP6 was only prenylated, primarily by geranylgeranyl. The activated AtROP6 that accumulated in detergent-resistant membranes was modified by prenyl and acyl lipids, identified as palmitic and stearic acids. Consistently, activated His 6 -GFP-Atrop6 CA mS 156 , in which C156 was mutated into serine, accumulated in Triton-soluble membranes. These findings show that upon GTP binding and activation, AtROP6, and possibly other ROPs, are transiently S-acylated, inducing their partitioning into detergent-resistant membranes.

Funder

German-Israeli Foundation for Scientific Research and Development

Israel Academy of Sciences and Humanities

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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