Decoding the Divergent Subcellular Location of Two Highly Similar Paralogous LEA Proteins

Many mitochondrial proteins are synthesized as precursors in the cytosol with an N-terminal mitochondrial targeting sequence (MTS) which is cleaved off upon import. Although much is known about import mechanisms and MTS structural features, the variability of MTS still hampers robust sub-cellular so...

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Main Authors: Marie-Hélène Avelange-Macherel, Adrien Candat, Martine Neveu, Dimitri Tolleter, David Macherel
Format: Article
Language:English
Published: MDPI AG 2018-05-01
Series:International Journal of Molecular Sciences
Subjects:
Online Access:http://www.mdpi.com/1422-0067/19/6/1620
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spelling doaj-1e1207f2bf8a4e3c91ac85dbfc6012e02020-11-24T20:51:11ZengMDPI AGInternational Journal of Molecular Sciences1422-00672018-05-01196162010.3390/ijms19061620ijms19061620Decoding the Divergent Subcellular Location of Two Highly Similar Paralogous LEA ProteinsMarie-Hélène Avelange-Macherel0Adrien Candat1Martine Neveu2Dimitri Tolleter3David Macherel4IRHS, Agrocampus-Ouest, INRA, Université d’Angers, SFR 4207 Quasav, 42 rue George Morel, 49071 Beaucouzé, FranceIRHS, Agrocampus-Ouest, INRA, Université d’Angers, SFR 4207 Quasav, 42 rue George Morel, 49071 Beaucouzé, FranceIRHS, Agrocampus-Ouest, INRA, Université d’Angers, SFR 4207 Quasav, 42 rue George Morel, 49071 Beaucouzé, FranceIRHS, Agrocampus-Ouest, INRA, Université d’Angers, SFR 4207 Quasav, 42 rue George Morel, 49071 Beaucouzé, FranceIRHS, Agrocampus-Ouest, INRA, Université d’Angers, SFR 4207 Quasav, 42 rue George Morel, 49071 Beaucouzé, FranceMany mitochondrial proteins are synthesized as precursors in the cytosol with an N-terminal mitochondrial targeting sequence (MTS) which is cleaved off upon import. Although much is known about import mechanisms and MTS structural features, the variability of MTS still hampers robust sub-cellular software predictions. Here, we took advantage of two paralogous late embryogenesis abundant proteins (LEA) from Arabidopsis with different subcellular locations to investigate structural determinants of mitochondrial import and gain insight into the evolution of the LEA genes. LEA38 and LEA2 are short proteins of the LEA_3 family, which are very similar along their whole sequence, but LEA38 is targeted to mitochondria while LEA2 is cytosolic. Differences in the N-terminal protein sequences were used to generate a series of mutated LEA2 which were expressed as GFP-fusion proteins in leaf protoplasts. By combining three types of mutation (substitution, charge inversion, and segment replacement), we were able to redirect the mutated LEA2 to mitochondria. Analysis of the effect of the mutations and determination of the LEA38 MTS cleavage site highlighted important structural features within and beyond the MTS. Overall, these results provide an explanation for the likely loss of mitochondrial location after duplication of the ancestral gene.http://www.mdpi.com/1422-0067/19/6/1620late embryogenesis abundant proteinmitochondrionmitochondrial importgene duplicationparalog
collection DOAJ
language English
format Article
sources DOAJ
author Marie-Hélène Avelange-Macherel
Adrien Candat
Martine Neveu
Dimitri Tolleter
David Macherel
spellingShingle Marie-Hélène Avelange-Macherel
Adrien Candat
Martine Neveu
Dimitri Tolleter
David Macherel
Decoding the Divergent Subcellular Location of Two Highly Similar Paralogous LEA Proteins
International Journal of Molecular Sciences
late embryogenesis abundant protein
mitochondrion
mitochondrial import
gene duplication
paralog
author_facet Marie-Hélène Avelange-Macherel
Adrien Candat
Martine Neveu
Dimitri Tolleter
David Macherel
author_sort Marie-Hélène Avelange-Macherel
title Decoding the Divergent Subcellular Location of Two Highly Similar Paralogous LEA Proteins
title_short Decoding the Divergent Subcellular Location of Two Highly Similar Paralogous LEA Proteins
title_full Decoding the Divergent Subcellular Location of Two Highly Similar Paralogous LEA Proteins
title_fullStr Decoding the Divergent Subcellular Location of Two Highly Similar Paralogous LEA Proteins
title_full_unstemmed Decoding the Divergent Subcellular Location of Two Highly Similar Paralogous LEA Proteins
title_sort decoding the divergent subcellular location of two highly similar paralogous lea proteins
publisher MDPI AG
series International Journal of Molecular Sciences
issn 1422-0067
publishDate 2018-05-01
description Many mitochondrial proteins are synthesized as precursors in the cytosol with an N-terminal mitochondrial targeting sequence (MTS) which is cleaved off upon import. Although much is known about import mechanisms and MTS structural features, the variability of MTS still hampers robust sub-cellular software predictions. Here, we took advantage of two paralogous late embryogenesis abundant proteins (LEA) from Arabidopsis with different subcellular locations to investigate structural determinants of mitochondrial import and gain insight into the evolution of the LEA genes. LEA38 and LEA2 are short proteins of the LEA_3 family, which are very similar along their whole sequence, but LEA38 is targeted to mitochondria while LEA2 is cytosolic. Differences in the N-terminal protein sequences were used to generate a series of mutated LEA2 which were expressed as GFP-fusion proteins in leaf protoplasts. By combining three types of mutation (substitution, charge inversion, and segment replacement), we were able to redirect the mutated LEA2 to mitochondria. Analysis of the effect of the mutations and determination of the LEA38 MTS cleavage site highlighted important structural features within and beyond the MTS. Overall, these results provide an explanation for the likely loss of mitochondrial location after duplication of the ancestral gene.
topic late embryogenesis abundant protein
mitochondrion
mitochondrial import
gene duplication
paralog
url http://www.mdpi.com/1422-0067/19/6/1620
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