A Chaperone Function of NO CATALASE ACTIVITY1 Is Required to Maintain Catalase Activity and for Multiple Stress Responses in Arabidopsis

Author:

Li Jing1,Liu Juntao1,Wang Guoqiang1,Cha Joon-Yung2,Li Guannan1,Chen She3,Li Zhen1,Guo Jinghua4,Zhang Caiguo1,Yang Yongqing1,Kim Woe-Yeon2,Yun Dae-Jin2,Schumaker Karen S.5,Chen Zhongzhou1,Guo Yan16

Affiliation:

1. State Key Laboratory of Plant Physiology and Biochemistry, College of Biological Sciences, China Agricultural University, Beijing 100193, China

2. Division of Applied Life Sciences (BK21 Plus Program), Gyeongsang National University, Jinju City 660-701, Korea

3. National Institute of Biological Sciences, Beijing 102206, China

4. College of Life Science, Beijing Normal University, Beijing 100875, China

5. School of Plant Sciences, University of Arizona, Tucson, Arizona 85721

6. National Center for Plant Gene Research, Beijing 100193, China

Abstract

Abstract Catalases are key regulators of reactive oxygen species homeostasis in plant cells. However, the regulation of catalase activity is not well understood. In this study, we isolated an Arabidopsis thaliana mutant, no catalase activity1-3 (nca1-3) that is hypersensitive to many abiotic stress treatments. The mutated gene was identified by map-based cloning as NCA1, which encodes a protein containing an N-terminal RING-finger domain and a C-terminal tetratricopeptide repeat-like helical domain. NCA1 interacts with and increases catalase activity maximally in a 240-kD complex in planta. In vitro, NCA1 interacts with CATALASE2 (CAT2) in a 1:1 molar ratio, and the NCA1 C terminus is essential for this interaction. CAT2 activity increased 10-fold in the presence of NCA1, and zinc ion binding of the NCA1 N terminus is required for this increase. NCA1 has chaperone protein activity that may maintain the folding of catalase in a functional state. NCA1 is a cytosol-located protein. Expression of NCA1 in the mitochondrion of the nca1-3 mutant does not rescue the abiotic stress phenotypes of the mutant, while expression in the cytosol or peroxisome does. Our results suggest that NCA1 is essential for catalase activity.

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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