The translocon protein FtsHi1 is an ATP‐dependent DNA/RNA helicase that prevents R‐loop accumulation in chloroplasts

Author:

Chai Xin123ORCID,Wang Xiushun12ORCID,Rong Liwei12,Luo Manfei12ORCID,Yuan Li12ORCID,Li Qiuxin12ORCID,He Baoye1ORCID,Jiang Jingjing1ORCID,Ji Daili1ORCID,Ouyang Min1ORCID,Lu Qingtao1ORCID,Zhang Lixin4ORCID,Rochaix Jean‐David56ORCID,Chi Wei127ORCID

Affiliation:

1. Photosynthesis Research Center, Key Laboratory of Photobiology Institute of Botany, Chinese Academy of Sciences Beijing 100093 China

2. University of Chinese Academy of Sciences Beijing 100049 China

3. Artemisinin Research Center Institute of Chinese Materia Medica, China Academy of Chinese Medical Sciences Beijing 100700 China

4. State Key Laboratory of Crop Stress Adaptation and Improvement, School of Life Sciences Henan University 85 Minglun St. Kaifeng 475001 China

5. Department of Molecular Biology University of Geneva 1211 Geneva Switzerland

6. Department of Plant Biology University of Geneva 1211 Geneva Switzerland

7. The Innovative Academy of Seed Design Chinese Academy of Sciences Beijing 100101 China

Abstract

Summary R‐loops, three‐stranded nucleic acid structures consisting of a DNA: RNA hybrid and displaced single‐stranded DNA, play critical roles in gene expression and genome stability. How R‐loop homeostasis is integrated into chloroplast gene expression remains largely unknown. We found an unexpected function of FtsHi1, an inner envelope membrane‐bound AAA‐ATPase in chloroplast R‐loop homeostasis of Arabidopsis thaliana. Previously, this protein was shown to function as a component of the import motor complex for nuclear‐encoded chloroplast proteins. However, this study provides evidence that FtsHi1 is an ATP‐dependent helicase that efficiently unwinds both DNA–DNA and DNA–RNA duplexes, thereby preventing R‐loop accumulation. Over‐accumulation of R‐loops could impair chloroplast transcription but not necessarily genome integrity. The dual function of FtsHi1 in both protein import and chloroplast gene expression may be important to coordinate the biogenesis of nuclear‐ and chloroplast‐encoded subunits of multi‐protein photosynthetic complexes. This study suggests a mechanical link between protein import and R‐loop homeostasis in chloroplasts of higher plants.

Funder

National Key Research and Development Program of China

Publisher

Wiley

Subject

Plant Science,Physiology

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