Literature DB >> 25619693

HOS1 regulates Argonaute1 by promoting transcription of the microRNA gene MIR168b in Arabidopsis.

Bangshing Wang1, Cheng-Guo Duan, Xingang Wang, Yueh-Ju Hou, Jun Yan, Caiqiu Gao, Jin-Hong Kim, Huiming Zhang, Jian-Kang Zhu.   

Abstract

Proper accumulation and function of miRNAs is essential for plant growth and development. While core components of the miRNA biogenesis pathway and miRNA-induced silencing complex have been well characterized, cellular regulators of miRNAs remain to be fully explored. Here we report that High Expression Of Osmotically Responsive Genes1 (HOS1) is a regulator of an important miRNA, mi168a/b, that targets the Argonaute1 (AGO1) gene in Arabidopsis. HOS1 functions as an ubiquitin E3 ligase to regulate plant cold-stress responses, associates with the nuclear pores to regulate mRNA export, and regulates the circadian clock and flowering time by binding to chromatin of the flowering regulator gene Flowering Locus C (FLC). In a genetic screen for enhancers of sic-1, we isolated a loss-of-function Arabidopsis mutant of HOS1 that is defective in miRNA biogenesis. Like other hos1 mutant alleles, the hos1-7 mutant flowered early and was smaller in stature than the wild-type. Dysfunction in HOS1 reduced the abundance of miR168a/b but not of other miRNAs. In hos1 mutants, pri-MIR168b and pre-MIR168b levels were decreased, and RNA polymerase II occupancy was reduced at the promoter of MIR168b but not that of MIR168a. Chromatin immunoprecipitation assays revealed that HOS1 protein is enriched at the chromatin of the MIR168b promoter. The reduced miR168a/b level in hos1 mutants results in an increase in the mRNA and protein levels of its target gene, AGO1. Our results reveal that HOS1 regulates miR168a/b and AGO1 levels in Arabidopsis by maintaining proper transcription of MIR168b.
© 2015 The Authors The Plant Journal © 2015 John Wiley & Sons Ltd.

Entities:  

Keywords:  Arabidopsis thaliana; HIGH EXPRESSION OF OSMOTICALLY RESPONSIVE GENES1; MIR168b; gene expression; microRNA; transcriptional regulation

Mesh:

Substances:

Year:  2015        PMID: 25619693      PMCID: PMC4355216          DOI: 10.1111/tpj.12772

Source DB:  PubMed          Journal:  Plant J        ISSN: 0960-7412            Impact factor:   6.417


  49 in total

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Authors:  N Baumberger; D C Baulcombe
Journal:  Proc Natl Acad Sci U S A       Date:  2005-08-04       Impact factor: 11.205

4.  The Arabidopsis cold-responsive transcriptome and its regulation by ICE1.

Authors:  Byeong-ha Lee; David A Henderson; Jian-Kang Zhu
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5.  Nuclear processing and export of microRNAs in Arabidopsis.

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6.  AGO1 homeostasis entails coexpression of MIR168 and AGO1 and preferential stabilization of miR168 by AGO1.

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8.  The E3 ubiquitin ligase HOS1 regulates Arabidopsis flowering by mediating CONSTANS degradation under cold stress.

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2.  The Arabidopsis RING-Type E3 Ligase TEAR1 Controls Leaf Development by Targeting the TIE1 Transcriptional Repressor for Degradation.

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Journal:  Plant Cell       Date:  2017-01-18       Impact factor: 11.277

Review 3.  E3 Ubiquitin Ligases: Ubiquitous Actors in Plant Development and Abiotic Stress Responses.

Authors:  Kai Shu; Wenyu Yang
Journal:  Plant Cell Physiol       Date:  2017-09-01       Impact factor: 4.927

4.  Red Light-Mediated Degradation of CONSTANS by the E3 Ubiquitin Ligase HOS1 Regulates Photoperiodic Flowering in Arabidopsis.

Authors:  Ana Lazaro; Alfonso Mouriz; Manuel Piñeiro; José A Jarillo
Journal:  Plant Cell       Date:  2015-09-15       Impact factor: 11.277

5.  Active 5' splice sites regulate the biogenesis efficiency of Arabidopsis microRNAs derived from intron-containing genes.

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6.  Cross-talk between freezing response and signaling for regulatory transcriptions of MIR475b and its targets by miR475b promoter in Populus suaveolens.

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7.  An Arabidopsis Nucleoporin NUP85 modulates plant responses to ABA and salt stress.

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8.  CRISPR/Cas9-Mediated Knockout of HOS1 Reveals Its Role in the Regulation of Secondary Metabolism in Arabidopsis thaliana.

Authors:  Yury Shkryl; Yulia Yugay; Tatiana Avramenko; Valeria Grigorchuk; Tatiana Gorpenchenko; Olga Grischenko; Victor Bulgakov
Journal:  Plants (Basel)       Date:  2021-01-06
  8 in total

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