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Biology subjects

Horvath, B. M.

Publications and source records attributed to Horvath, B. M..

2 recordsLinked to original sources

LIFERING, an E3 ligase, targets the acyl-CoA dehydrogenase-like protein IBR3, for ubiquitination and coordinates cell proliferation and cell death upon DNA damage

Plants rapidly respond to environmental changes to ensure an optimal balance between growth and survival with intact genome. Here, we show that a DNA damage response gene, which we named LIFERING, is under the direct and independent regulation of ATM/ATR-SOG1 and RBR pathways. We demonstrate that LIFERING upon DNA damage plays an essential role in maintaining the balance between cell proliferation and cell death. Downstream of RBR, it is required to maintain proliferation, and in response to DNA damaging agents it initiates a cell death accompanied by rapid elongation and differentiation of the transit amplifying cells in the root meristem. LIFERING is a RING-between-RING E3 ligase; its ligase activity is dependent on the Cys392 residue located in the BRcat domain, responsible for the coordination of zinc ion binding. Using proximity labelling, we identified the acyl-CoA dehydrogenase-like protein IBR3, which is involved in the conversion of indole-3-butyric acid (IBA) to indole-3-acetic acid (IAA), as one of its targets. We provide evidence that IBR3 is ubiquitinated at several Lys residues in the presence of LIFERING. Our findings show that LIFERING rapidly responds to DNA damage and via ubiquitination of IBR3, is likely to be involved in the regulation of free-auxin level, indicating a link between DNA damage response and auxin regulation in the root.

plant biology↗

FAN, the homolog of mammalian Apoptosis Antagonizing Transcription Factor AATF/Che-1 protein, is involved in safeguarding genome stability through the ATR induced pathway in Arabidopsis

Cellular DNA can be damaged by endogenous or exogenous genotoxins. In plants, reduced genome stability can have a detrimental effect on development. Here, we show the identification of the fan mutant from an ethyl-methanesulfonate (EMS) mutagenized Arabidopsis Col-0 population on the basis of its short root and small leaf phenotype. The causative mutation was identified as a G-to-A transition at the border of the eighth intron and ninth exon of the At5G61330 gene, resulting in a mis-spliced mRNA transcript. FAN is a homolog of the mammalian AATF/Che-1 protein consisting of conserved AATF/Che-1 and TRAUB domains in Arabidopsis. In the fan mutant, under normal conditions, we detected DNA damage and cell death response at the root tip, while hypersensitivity to the exogenously applied hydroxyurea (HU) compared to Col-0, suggesting that FAN plays a role in the DNA damage response (DDR). Furthermore, our results showed that FAN is involved in DDR pathway regulated by ATM/RAD53-RELATED (ATR). Taken together, these suggest that FAN is required for meristem maintenance and the DNA damage response.

plant biology↗