Mutation of AtPME2, a pH-Dependent Pectin Methylesterase, Affects Cell Wall Structure and Hypocotyl Elongation

Author:

Hocq Ludivine1,Habrylo Olivier1ORCID,Sénéchal Fabien1ORCID,Voxeur Aline1ORCID,Pau-Roblot Corinne1ORCID,Safran Josip1ORCID,Fournet Françoise1,Bassard Solène1ORCID,Battu Virginie2,Demailly Hervé3,Tovar José C4,Pilard Serge5ORCID,Marcelo Paulo6,Savary Brett J4,Mercadante Davide7ORCID,Njo Maria Fransiska89,Beeckman Tom89,Boudaoud Arezki10ORCID,Gutierrez Laurent3,Pelloux Jérôme1ORCID,Lefebvre Valérie1ORCID

Affiliation:

1. UMRT INRAE 1158 BioEcoAgro—BIOPI Plant Biology and Innovation, University of Picardie , 33 Rue St Leu, Amiens 80039, France

2. Plant Reproduction and Development Laboratory, ENS de Lyon UMR 5667 , BP 7000, Lyon cedex 07 69342, France

3. Molecular Biology Platform (CRRBM), University of Picardie , 33 Rue St Leu, Amiens 80039, France

4. Arkansas Biosciences Institute, Arkansas State University , PO Box 600, Jonesboro, AR 72467, USA

5. Analytical Platform (PFA), University of Picardie , 33 Rue St Leu, Amiens 80039, France

6. Cellular imaging and protein analysis platform (ICAP), University of Picardie , Avenue Laënnec,CHU Sud, CURS, Amiens cedex 1 80054, France

7. School of Chemical Sciences, The University of Auckland , Private Bag 92019, Auckland 1142, New Zealand

8. Department of Plant Biotechnology and Bioinformatics, Ghent University , Ghent 9052, Belgium

9. VIB Center for Plant Systems Biology , Ghent 9052, Belgium

10. Hydrodynamics Laboratory, Ecole Polytechnique , Route de Saclay, Palaiseau 91128, France

Abstract

Abstract Pectin methylesterases (PMEs) modify homogalacturonan’s chemistry and play a key role in regulating primary cell wall mechanical properties. Here, we report on Arabidopsis AtPME2, which we found to be highly expressed during lateral root emergence and dark-grown hypocotyl elongation. We showed that dark-grown hypocotyl elongation was reduced in knock-out mutant lines as compared to the control. The latter was related to the decreased total PME activity as well as increased stiffness of the cell wall in the apical part of the hypocotyl. To relate phenotypic analyses to the biochemical specificity of the enzyme, we produced the mature active enzyme using heterologous expression in Pichia pastoris and characterized it through the use of a generic plant PME antiserum. AtPME2 is more active at neutral compared to acidic pH, on pectins with a degree of 55–70% methylesterification. We further showed that the mode of action of AtPME2 can vary according to pH, from high processivity (at pH8) to low processivity (at pH5), and relate these observations to the differences in electrostatic potential of the protein. Our study brings insights into how the pH-dependent regulation by PME activity could affect the pectin structure and associated cell wall mechanical properties.

Funder

Institut Universitaire de France

Agence Nationale de la Recherche

Publisher

Oxford University Press (OUP)

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