Literature DB >> 19825649

A truncated Arabidopsis NUCLEOSOME ASSEMBLY PROTEIN 1, AtNAP1;3T, alters plant growth responses to abscisic acid and salt in the Atnap1;3-2 mutant.

Zi-Qiang Liu1, Juan Gao1, Ai-Wu Dong2, Wen-Hui Shen3.   

Abstract

Chromatin remodeling is thought to have crucial roles in plant adaptive response to environmental stimulus. Here, we report that, in Arabidopsis, the evolutionarily conserved histone chaperone, NUCLEOSOME ASSEMBLY PROTEIN 1 (NAP1), is involved in plant response to abscisic acid (ABA), a phytohormone important in stress adaptation. We show that simultaneous loss-of-function of AtNAP1;1, AtNAP1;2, and AtNAP1;3 (the triple mutant m123-1) caused a slight hypersensitive response to ABA in seedling growth. Strikingly, the other triple mutant m123-2 containing a different mutant allele of AtNAP1;3, the Atnap1;3-2 allele, showed a hyposensitive response to ABA and a decreased tolerance to salt stress. This ABA-hyposensitive and salt response phenotype specifically associated with the Atnap1;3-2 mutant allele. We show that this mutant allele produced a truncated protein, AtNAP1;3T, which lacks 34 amino acids at the C-terminus compared to the wild-type protein AtNAP1;3. We further show that the heterozygous plants containing the Atnap1;3-2 mutant allele as well as transgenic plants overexpressing AtNAP1;3T exhibit ABA-hyposensitive phenotype. It thus indicates that AtNAP1;3T functions as a dominant negative factor in ABA response. The expression of some ABA-responsive genes, including genes encoding protein kinases and transcription regulators, was found perturbed in the mutant and in the AtNAP1;3T transgenic plants. Taken together, our study uncovered AtNAP1 proteins as positive regulators and AtNAP1;3T as a negative regulator in ABA signaling pathways, providing a novel link of chromatin remodeling to hormonal and stress responses.

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Year:  2009        PMID: 19825649     DOI: 10.1093/mp/ssp026

Source DB:  PubMed          Journal:  Mol Plant        ISSN: 1674-2052            Impact factor:   13.164


  15 in total

1.  Does brassinosteroid function require chromatin remodeling?

Authors:  Tomoaki Shigeta; Yuya Yoshimitsu; Yasushi Nakamura; Shigehisa Okamoto; Tomoaki Matsuo
Journal:  Plant Signal Behav       Date:  2011-11-01

2.  NAP1 family histone chaperones are required for somatic homologous recombination in Arabidopsis.

Authors:  Juan Gao; Yan Zhu; Wangbin Zhou; Jean Molinier; Aiwu Dong; Wen-Hui Shen
Journal:  Plant Cell       Date:  2012-04-24       Impact factor: 11.277

3.  Transgenerational inheritance and resetting of stress-induced loss of epigenetic gene silencing in Arabidopsis.

Authors:  Christina Lang-Mladek; Olga Popova; Kathrin Kiok; Marc Berlinger; Branislava Rakic; Werner Aufsatz; Claudia Jonak; Marie-Theres Hauser; Christian Luschnig
Journal:  Mol Plant       Date:  2010-04-21       Impact factor: 13.164

4.  NAP1-Related Protein 1 (NRP1) has multiple interaction modes for chaperoning histones H2A-H2B.

Authors:  Qiang Luo; Baihui Wang; Zhen Wu; Wen Jiang; Yueyue Wang; Kangxi Du; Nana Zhou; Lina Zheng; Jianhua Gan; Wen-Hui Shen; Jinbiao Ma; Aiwu Dong
Journal:  Proc Natl Acad Sci U S A       Date:  2020-11-16       Impact factor: 11.205

5.  A NAP-Family Histone Chaperone Functions in Abiotic Stress Response and Adaptation.

Authors:  Amit K Tripathi; Ashwani Pareek; Sneh Lata Singla-Pareek
Journal:  Plant Physiol       Date:  2016-06-24       Impact factor: 8.340

Review 6.  Plant hormone signaling and modulation of DNA repair under stressful conditions.

Authors:  Mattia Donà; Anca Macovei; Matteo Faè; Daniela Carbonera; Alma Balestrazzi
Journal:  Plant Cell Rep       Date:  2013-03-19       Impact factor: 4.570

7.  Arabidopsis Pol II-Dependent in Vitro Transcription System Reveals Role of Chromatin for Light-Inducible rbcS Gene Transcription.

Authors:  Ayaka Ido; Shinya Iwata; Yuka Iwata; Hisako Igarashi; Takahiro Hamada; Seiji Sonobe; Masahiro Sugiura; Yasushi Yukawa
Journal:  Plant Physiol       Date:  2015-12-10       Impact factor: 8.340

8.  A systems biology model of the regulatory network in Populus leaves reveals interacting regulators and conserved regulation.

Authors:  Nathaniel Robert Street; Stefan Jansson; Torgeir R Hvidsten
Journal:  BMC Plant Biol       Date:  2011-01-13       Impact factor: 4.215

9.  Early cytokinin response proteins and phosphoproteins of Arabidopsis thaliana identified by proteome and phosphoproteome profiling.

Authors:  Martin Cerny; Filip Dycka; Janette Bobál'ová; Bretislav Brzobohaty
Journal:  J Exp Bot       Date:  2010-10-25       Impact factor: 6.992

10.  Histone chaperones in Arabidopsis and rice: genome-wide identification, phylogeny, architecture and transcriptional regulation.

Authors:  Amit K Tripathi; Khushwant Singh; Ashwani Pareek; Sneh L Singla-Pareek
Journal:  BMC Plant Biol       Date:  2015-02-12       Impact factor: 4.215

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