A truncated variant of the ribosome-associated trigger factor specifically contributes to plant chloroplast ribosome biogenesis

F Fabian Ries J Jasmin Gorlt S Sabrina Kaiser V Vanessa Scherer C Charlotte Seydel (Department of Plant Development, Faculty of Biology, Ludwig-Maximilians-Universität München) S Sandra Nguyen A Andreas Klingl J Julia Legen (Molecular Genetics, Institute of Biology, Faculty of Life Sciences, Humboldt Universität zu Berlin) C Christian Schmitz-Linneweber (Molecular Genetics, Institute of Biology, Faculty of Life Sciences, Humboldt Universität zu Berlin) H Hinrik Plaggenborg J Jediael Z. Y. Ng D Dennis Wiens G Georg K. A. Hochberg M Markus Räschle (Molecular Genetics, Department of Biology, RPTU University Kaiserslautern-Landau, Kaiserslautern, Germany.) T Torsten Möhlmann D David Scheuring F Felix Willmund

Abstract

Abstract Molecular chaperones are essential throughout a protein’s life and act already during protein synthesis. Bacteria and chloroplasts of plant cells share the ribosome-associated chaperone trigger factor (Tig1 in plastids), facilitating maturation of emerging nascent polypeptides. While typical trigger factor chaperones employ three domains for their task, the here described truncated form, Tig2, contains just the ribosome binding domain. Tig2 is widely present in green plants and appears to have acquired an entirely different task than co-translational nascent polypeptide folding. Tig2 deletion results in remarkable leaf developmental defects of cold-exposed Arabidopsis thaliana plants and specific defects in plastidic ribosomes. Our data indicate that Tig2 functions during ribosome biogenesis by promoting the maturation of the large subunit. We hypothesize that Tig2 binding to the ribosomal tunnel-exit surface aids protecting this sensitive surface during assembly. Tig2 illustrates a fascinating concept of how a chaperone domain evolved individually, serving a completely different molecular task.

Article Details

Volume / Issue Vol. 16, Issue 1
Published January 13, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (17)

F

Fabian Ries

J

Jasmin Gorlt

S

Sabrina Kaiser

V

Vanessa Scherer

C

Charlotte Seydel

Department of Plant Development, Faculty of Biology, Ludwig-Maximilians-Universität München

S

Sandra Nguyen

A

Andreas Klingl

J

Julia Legen

Molecular Genetics, Institute of Biology, Faculty of Life Sciences, Humboldt Universität zu Berlin

C

Christian Schmitz-Linneweber

Molecular Genetics, Institute of Biology, Faculty of Life Sciences, Humboldt Universität zu Berlin

H

Hinrik Plaggenborg

J

Jediael Z. Y. Ng

D

Dennis Wiens

G

Georg K. A. Hochberg

M

Markus Räschle

Molecular Genetics, Department of Biology, RPTU University Kaiserslautern-Landau, Kaiserslautern, Germany.

T

Torsten Möhlmann

D

David Scheuring

F

Felix Willmund