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Dynamics and Endocytosis of Flot1 in Arabidopsis Require CPI1 Function

Membrane microdomains are nano-scale domains (10–200 nm) enriched in sterols and sphingolipids. They have many important biological functions, including vesicle transport, endocytosis, and pathogen invasion. A previous study reported that the membrane microdomain-associated protein Flotillin1 (Flot1...

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Autores principales: Cao, Yangyang, He, Qizouhong, Qi, Zengxing, Zhang, Yan, Lu, Liang, Xue, Jingyuan, Li, Junling, Li, Ruili
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7084554/
https://www.ncbi.nlm.nih.gov/pubmed/32106431
http://dx.doi.org/10.3390/ijms21051552
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author Cao, Yangyang
He, Qizouhong
Qi, Zengxing
Zhang, Yan
Lu, Liang
Xue, Jingyuan
Li, Junling
Li, Ruili
author_facet Cao, Yangyang
He, Qizouhong
Qi, Zengxing
Zhang, Yan
Lu, Liang
Xue, Jingyuan
Li, Junling
Li, Ruili
author_sort Cao, Yangyang
collection PubMed
description Membrane microdomains are nano-scale domains (10–200 nm) enriched in sterols and sphingolipids. They have many important biological functions, including vesicle transport, endocytosis, and pathogen invasion. A previous study reported that the membrane microdomain-associated protein Flotillin1 (Flot1) was involved in plant development in Arabidopsis thaliana; however, whether sterols affect the plant immunity conveyed by Flot1 is unknown. Here, we showed that the root length in sterol-deficient cyclopropylsterol isomerase 1 (cpi1-1) mutants expressing Flot1 was significantly shorter than in control seedlings. The cotyledon epidermal cells in cpi1-1 mutants expressing Flot1 were smaller than in controls. Moreover, variable-angle total internal reflection fluorescence microscopy (VA-TIRFM) and single-particle tracking (SPT) analysis demonstrated that the long-distance Flot1-GFP movement was decreased significantly in cpi1-1 mutants compared with the control seedlings. Meanwhile, the value of the diffusion coefficient Ĝ was dramatically decreased in cpi1-1 mutants after flagelin22 (flg22) treatment compared with the control seedlings, indicating that sterols affect the lateral mobility of Flot1-GFP within the plasma membrane. Importantly, using confocal microscopy, we determined that the endocytosis of Flot1-GFP was decreased in cpi1-1 mutants, which was confirmed by fluorescence cross spectroscopy (FCS) analysis. Hence, these results demonstrate that sterol composition plays a critical role in the plant defense responses of Flot1.
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spelling pubmed-70845542020-03-24 Dynamics and Endocytosis of Flot1 in Arabidopsis Require CPI1 Function Cao, Yangyang He, Qizouhong Qi, Zengxing Zhang, Yan Lu, Liang Xue, Jingyuan Li, Junling Li, Ruili Int J Mol Sci Article Membrane microdomains are nano-scale domains (10–200 nm) enriched in sterols and sphingolipids. They have many important biological functions, including vesicle transport, endocytosis, and pathogen invasion. A previous study reported that the membrane microdomain-associated protein Flotillin1 (Flot1) was involved in plant development in Arabidopsis thaliana; however, whether sterols affect the plant immunity conveyed by Flot1 is unknown. Here, we showed that the root length in sterol-deficient cyclopropylsterol isomerase 1 (cpi1-1) mutants expressing Flot1 was significantly shorter than in control seedlings. The cotyledon epidermal cells in cpi1-1 mutants expressing Flot1 were smaller than in controls. Moreover, variable-angle total internal reflection fluorescence microscopy (VA-TIRFM) and single-particle tracking (SPT) analysis demonstrated that the long-distance Flot1-GFP movement was decreased significantly in cpi1-1 mutants compared with the control seedlings. Meanwhile, the value of the diffusion coefficient Ĝ was dramatically decreased in cpi1-1 mutants after flagelin22 (flg22) treatment compared with the control seedlings, indicating that sterols affect the lateral mobility of Flot1-GFP within the plasma membrane. Importantly, using confocal microscopy, we determined that the endocytosis of Flot1-GFP was decreased in cpi1-1 mutants, which was confirmed by fluorescence cross spectroscopy (FCS) analysis. Hence, these results demonstrate that sterol composition plays a critical role in the plant defense responses of Flot1. MDPI 2020-02-25 /pmc/articles/PMC7084554/ /pubmed/32106431 http://dx.doi.org/10.3390/ijms21051552 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cao, Yangyang
He, Qizouhong
Qi, Zengxing
Zhang, Yan
Lu, Liang
Xue, Jingyuan
Li, Junling
Li, Ruili
Dynamics and Endocytosis of Flot1 in Arabidopsis Require CPI1 Function
title Dynamics and Endocytosis of Flot1 in Arabidopsis Require CPI1 Function
title_full Dynamics and Endocytosis of Flot1 in Arabidopsis Require CPI1 Function
title_fullStr Dynamics and Endocytosis of Flot1 in Arabidopsis Require CPI1 Function
title_full_unstemmed Dynamics and Endocytosis of Flot1 in Arabidopsis Require CPI1 Function
title_short Dynamics and Endocytosis of Flot1 in Arabidopsis Require CPI1 Function
title_sort dynamics and endocytosis of flot1 in arabidopsis require cpi1 function
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7084554/
https://www.ncbi.nlm.nih.gov/pubmed/32106431
http://dx.doi.org/10.3390/ijms21051552
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