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Institute of Genetics and Developmental Biology
Chinese Academy of Sciences, China
Tel: +86-10-6480-6585 (Office)
Fax: +86-10-6480-6595
E-mail: jrzuo@genetics.ac.cn
http://www.genetics.ac.cn/zuojianru
Area of expertise: Redox signaling; nitric oxide; S-nitrosylation; reactive oxygen speices; nitrogen nutrient
Editor until: Oct. 31, 2023
Selected Publications:
Chen, L., Wu, R., Feng, J., Feng, T., Wang, C., Hu, J., Zhan, N., Li, Y., Ma, X., Ren, B., Zhang, J., Song, C., Li J., Zhou, J., and Zuo J. (2020). Transnitrosylation mediated by the non-canonical catalase ROG1 regulates nitric oxide signaling in plants. Dev. Cell 53:444–457.
Feng, J., Chen, L., and Zuo, J. (2019). Protein S-nitrosylation in plants: Current progresses and challenges. J. Integr. Plant. Biol. 61:1206–1223.
Zhan, N., Wang, C., Chen, L., Yang, H., Feng, J., Gong, X., Ren, B., Wu, R., Mu, J., Li Y., Liu, Z., Zhou, Y., Peng, J., Wang, K., Huang, X., Xiao, S., and Zuo, J (2018). S-Nitrosylation targets GSNO reductase for selective autophagy during hypoxia responses in plants. Mol. Cell 71: 142–154.
Wang, Q., Nian, J., Xie, X., Yu, H., Zhang, J., Bai, J., Dong, G., Hu, J., Bai, B., Chen, L., Xie, Q., Feng, J., Yang, X., Peng, J., Chen, F., Qian, Q., Li J., and Zuo, J. (2018). Genetic variations in ARE1 mediate grain yield by modulating nitrogen utilization in rice. Nat. Commun. 9: 735.
Hu, J., Yang, H., Mu, J., Lu, T., Peng, J., Deng, X., Kong, Z., Bao, S., Cao, X., and Zuo J. (2017). Nitric oxide regulates protein methylation during stress responses in plants. Mol. Cell 67: 702–710.
Yang, X., Nian, J., Xie, Q., Feng, J., Zhang, F., Jing, H., Zhang, J., Dong, G., Liang, Y., Peng, J., Wang, G., Qian, Q., and Zuo, J. (2016). Rice ferredoxin-dependent glutamate synthase regulates nitrogen-carbon metabolomes and is genetically differentiated between japonica and indica subspecies. Mol. Plant 9:1520–1534.
Jing, H., Yang, X., Zhang, J., Liu, X., Zheng, H., Dong, G., Nian, J., Feng, F., Xia, B., Qian, Q., Li, J., and Zuo J. (2015). Peptidyl-prolyl isomerization targets rice Aux/IAAs for degradation during auxin signaling. Nat. Commun. 6: 7395.
Yang, H., Mu, J., Chen, L., Feng, J., Hu, J., Li, L., Zhou J.M., and Zuo, J. (2015). S-nitrosylation positively regulates ascorbate peroxidase activity during plant stress responses. Plant Physiol. 167: 1604–1615.
Hu, J., Huang, X., Chen, L., Sun, X., Lu, C., Zhang, L., Wang, Y., and Zuo, J. (2015). Site-specific nitrosoproteomic identification of endogenously S-nitrosylated proteins in Arabidopsis. Plant Physiol. 167: 1731–1746.
Ren, B., Chen, Q., Hong, S., Zhao, W., Feng, J., Feng, H., and Zuo, J. (2013). The Arabidopsis eukaryotic translation initiation factor eIF5A-2 regulates root protoxylem development by modulating cytokinin signaling. Plant Cell 25: 3841–3857.
Feng, J., Wang, C., Chen, Q., Chen, H., Ren, B., Li, X., and Zuo, J. (2013). S-nitrosylation of phosphotransfer proteins represses cytokinin signaling. Nat. Commun. 4: 1529.
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