Light plays an essential role in intracellular distribution of auxin efflux carrier PIN2 in Arabidopsis thaliana.

BACKGROUND: Light plays a key role in multiple plant developmental processes. It has been shown that root development is modulated by shoot-localized light signaling and requires shoot-derived transport of the plant hormone, auxin. However, the mechanism by which light regulates root development is...

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Main Authors: Ashverya Laxmi, Jianwei Pan, Mustafa Morsy, Rujin Chen
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2008-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2200863?pdf=render
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author Ashverya Laxmi
Jianwei Pan
Mustafa Morsy
Rujin Chen
author_facet Ashverya Laxmi
Jianwei Pan
Mustafa Morsy
Rujin Chen
author_sort Ashverya Laxmi
collection DOAJ
description BACKGROUND: Light plays a key role in multiple plant developmental processes. It has been shown that root development is modulated by shoot-localized light signaling and requires shoot-derived transport of the plant hormone, auxin. However, the mechanism by which light regulates root development is not largely understood. In plants, the endogenous auxin, indole-3-acetic acid, is directionally transported by plasma-membrane (PM)-localized auxin influx and efflux carriers in transporting cells. Remarkably, the auxin efflux carrier PIN proteins exhibit asymmetric PM localization, determining the polarity of auxin transport. Similar to PM-resident receptors and transporters in animal and yeast cells, PIN proteins undergo constitutive cycling between the PM and endosomal compartments. Auxin plays multiple roles in PIN protein intracellular trafficking, inhibiting PIN2 endocytosis at some concentrations and promoting PIN2 degradation at others. However, how PIN proteins are turned over in plant cells is yet to be addressed. METHODOLOGY AND PRINCIPLE FINDINGS: Using laser confocal scanning microscopy, and physiological and molecular genetic approaches, here, we show that in dark-grown seedlings, the PM localization of auxin efflux carrier PIN2 was largely reduced, and, in addition, PIN2 signal was detected in vacuolar compartments. This is in contrast to light-grown seedlings where PIN2 was predominantly PM-localized. In light-grown plants after shift to dark or to continuous red or far-red light, PIN2 also accumulated in vacuolar compartments. We show that PIN2 vacuolar targeting was derived from the PM via endocytic trafficking and inhibited by HY5-dependent light signaling. In addition, the ubiquitin 26S proteasome is involved in the process, since its inhibition by mutations in COP9 and a proteasome inhibitor MG132 impaired the process. CONCLUSIONS AND SIGNIFICANCE: Collectively, our data indicate that light plays an essential role in PIN2 intracellular trafficking, promoting PM-localization in the presence of light and, on the other hand, vacuolar targeting for protein degradation in the absence of light. Based on these results, we postulate that light regulation of root development is mediated at least in part by changes in the intracellular distribution of auxin efflux carriers, PIN proteins, in response to the light environment.
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spelling doaj.art-be563e3829884944af40217a86042a232022-12-22T01:34:29ZengPublic Library of Science (PLoS)PLoS ONE1932-62032008-01-0131e151010.1371/journal.pone.0001510Light plays an essential role in intracellular distribution of auxin efflux carrier PIN2 in Arabidopsis thaliana.Ashverya LaxmiJianwei PanMustafa MorsyRujin ChenBACKGROUND: Light plays a key role in multiple plant developmental processes. It has been shown that root development is modulated by shoot-localized light signaling and requires shoot-derived transport of the plant hormone, auxin. However, the mechanism by which light regulates root development is not largely understood. In plants, the endogenous auxin, indole-3-acetic acid, is directionally transported by plasma-membrane (PM)-localized auxin influx and efflux carriers in transporting cells. Remarkably, the auxin efflux carrier PIN proteins exhibit asymmetric PM localization, determining the polarity of auxin transport. Similar to PM-resident receptors and transporters in animal and yeast cells, PIN proteins undergo constitutive cycling between the PM and endosomal compartments. Auxin plays multiple roles in PIN protein intracellular trafficking, inhibiting PIN2 endocytosis at some concentrations and promoting PIN2 degradation at others. However, how PIN proteins are turned over in plant cells is yet to be addressed. METHODOLOGY AND PRINCIPLE FINDINGS: Using laser confocal scanning microscopy, and physiological and molecular genetic approaches, here, we show that in dark-grown seedlings, the PM localization of auxin efflux carrier PIN2 was largely reduced, and, in addition, PIN2 signal was detected in vacuolar compartments. This is in contrast to light-grown seedlings where PIN2 was predominantly PM-localized. In light-grown plants after shift to dark or to continuous red or far-red light, PIN2 also accumulated in vacuolar compartments. We show that PIN2 vacuolar targeting was derived from the PM via endocytic trafficking and inhibited by HY5-dependent light signaling. In addition, the ubiquitin 26S proteasome is involved in the process, since its inhibition by mutations in COP9 and a proteasome inhibitor MG132 impaired the process. CONCLUSIONS AND SIGNIFICANCE: Collectively, our data indicate that light plays an essential role in PIN2 intracellular trafficking, promoting PM-localization in the presence of light and, on the other hand, vacuolar targeting for protein degradation in the absence of light. Based on these results, we postulate that light regulation of root development is mediated at least in part by changes in the intracellular distribution of auxin efflux carriers, PIN proteins, in response to the light environment.http://europepmc.org/articles/PMC2200863?pdf=render
spellingShingle Ashverya Laxmi
Jianwei Pan
Mustafa Morsy
Rujin Chen
Light plays an essential role in intracellular distribution of auxin efflux carrier PIN2 in Arabidopsis thaliana.
PLoS ONE
title Light plays an essential role in intracellular distribution of auxin efflux carrier PIN2 in Arabidopsis thaliana.
title_full Light plays an essential role in intracellular distribution of auxin efflux carrier PIN2 in Arabidopsis thaliana.
title_fullStr Light plays an essential role in intracellular distribution of auxin efflux carrier PIN2 in Arabidopsis thaliana.
title_full_unstemmed Light plays an essential role in intracellular distribution of auxin efflux carrier PIN2 in Arabidopsis thaliana.
title_short Light plays an essential role in intracellular distribution of auxin efflux carrier PIN2 in Arabidopsis thaliana.
title_sort light plays an essential role in intracellular distribution of auxin efflux carrier pin2 in arabidopsis thaliana
url http://europepmc.org/articles/PMC2200863?pdf=render
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AT mustafamorsy lightplaysanessentialroleinintracellulardistributionofauxineffluxcarrierpin2inarabidopsisthaliana
AT rujinchen lightplaysanessentialroleinintracellulardistributionofauxineffluxcarrierpin2inarabidopsisthaliana