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Structure–function study of a Ca2+-independent metacaspase involved in lateral root emergence

Authors :
Simon Stael
Igor Sabljić
Dominique Audenaert
Thilde Andersson
Liana Tsiatsiani
Robert P. Kumpf
Andreu Vidal-Albalat
Cecilia Lindgren
Dominique Vercammen
Silke Jacques
Long Nguyen
Maria Njo
Álvaro D. Fernández-Fernández
Tine Beunens
Evy Timmerman
Kris Gevaert
Marc Van Montagu
Jerry Ståhlberg
Peter V. Bozhkov
Anna Linusson
Tom Beeckman
Frank Van Breusegem
Source :
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
Publication Year :
2023
Publisher :
Proceedings of the National Academy of Sciences, 2023.

Abstract

Metacaspases are part of an evolutionarily broad family of multifunctional cysteine proteases, involved in disease and normal development. As the structure–function relationship of metacaspases remains poorly understood, we solved the X-ray crystal structure of an Arabidopsis thaliana type II metacaspase (AtMCA-IIf) belonging to a particular subgroup not requiring calcium ions for activation. To study metacaspase activity in plants, we developed an in vitro chemical screen to identify small molecule metacaspase inhibitors and found several hits with a minimal thioxodihydropyrimidine-dione structure, of which some are specific AtMCA-IIf inhibitors. We provide mechanistic insight into the basis of inhibition by the TDP-containing compounds through molecular docking onto the AtMCA-IIf crystal structure. Finally, a TDP-containing compound (TDP6) effectively hampered lateral root emergence in vivo, probably through inhibition of metacaspases specifically expressed in the endodermal cells overlying developing lateral root primordia. In the future, the small compound inhibitors and crystal structure of AtMCA-IIf can be used to study metacaspases in other species, such as important human pathogens, including those causing neglected diseases.

Details

Language :
English
ISSN :
00278424 and 10916490
Database :
OpenAIRE
Journal :
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
Accession number :
edsair.doi.dedup.....e723d766be26d46f724c1998cc309b79