Literature DB >> 21478441

The DNA damage response signaling cascade regulates proliferation of the phytopathogenic fungus Ustilago maydis in planta.

Carmen de Sena-Tomás1, Alfonso Fernández-Álvarez, William K Holloman, José Pérez-Martín.   

Abstract

In the phytopathogenic fungus Ustilago maydis, the dikaryotic state dominates the period of growth occurring during the infectious phase. Dikaryons are cells in which two nuclei, one from each parent cell, share a single cytoplasm for a period of time without undergoing nuclear fusion. In fungal cells, maintenance of the dikaryotic state requires an intricate cell division process that often involves the formation of a structure known as the clamp connection as well as the sorting of one of the nuclei to this structure to ensure that each daughter dikaryon inherits a balance of each parental genome. Here, we describe an atypical role of the DNA damage checkpoint kinases Chk1 and Atr1 during pathogenic growth of U. maydis. We found that Chk1 and Atr1 collaborate to control cell cycle arrest during the induction of the virulence program in U. maydis and that Chk1 and Atr1 work together to control the dikaryon formation. These findings uncover a link between a widely conserved signaling cascade and the virulence program in a phytopathogen. We propose a model in which adjustment of the cell cycle by the Atr1-Chk1 axis controls fidelity in dikaryon formation. Therefore, Chk1 and Atr1 emerge as critical cell type regulators in addition to their roles in the DNA damage response.

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Year:  2011        PMID: 21478441      PMCID: PMC3101559          DOI: 10.1105/tpc.110.082552

Source DB:  PubMed          Journal:  Plant Cell        ISSN: 1040-4651            Impact factor:   11.277


  40 in total

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5.  MEGA2: molecular evolutionary genetics analysis software.

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Authors:  Kara A Nyberg; Rhett J Michelson; Charles W Putnam; Ted A Weinert
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8.  BRCA2 homolog required for proficiency in DNA repair, recombination, and genome stability in Ustilago maydis.

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10.  Activation of the cAMP pathway in Ustilago maydis reduces fungal proliferation and teliospore formation in plant tumors.

Authors:  J Krüger; G Loubradou; G Wanner; E Regenfelder; M Feldbrügge; R Kahmann
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  11 in total

1.  LAMMER kinase contributes to genome stability in Ustilago maydis.

Authors:  Carmen de Sena-Tomás; Jeanette H Sutherland; Mira Milisavljevic; Dragana B Nikolic; José Pérez-Martín; Milorad Kojic; William K Holloman
Journal:  DNA Repair (Amst)       Date:  2015-06-19

2.  Appressorium formation in the corn smut fungus Ustilago maydis requires a G2 cell cycle arrest.

Authors:  Sónia Castanheira; José Pérez-Martín
Journal:  Plant Signal Behav       Date:  2015

3.  Dikaryotic cell cycle in the phytopathogenic fungus Ustilago maydis is controlled by the DNA damage response cascade.

Authors:  Jose Pérez-Martín; Carmen de Sena-Tomás
Journal:  Plant Signal Behav       Date:  2011-10-01

4.  A DNA damage checkpoint pathway coordinates the division of dikaryotic cells in the ink cap mushroom Coprinopsis cinerea.

Authors:  Carmen de Sena-Tomás; Mónica Navarro-González; Ursula Kües; José Pérez-Martín
Journal:  Genetics       Date:  2013-06-21       Impact factor: 4.562

5.  Incompatibility between proliferation and plant invasion is mediated by a regulator of appressorium formation in the corn smut fungus Ustilago maydis.

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6.  Cytoplasmic retention and degradation of a mitotic inducer enable plant infection by a pathogenic fungus.

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8.  Fungal Ku prevents permanent cell cycle arrest by suppressing DNA damage signaling at telomeres.

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Review 9.  Fungal model systems and the elucidation of pathogenicity determinants.

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10.  MRN- and 9-1-1-Independent Activation of the ATR-Chk1 Pathway during the Induction of the Virulence Program in the Phytopathogen Ustilago maydis.

Authors:  María Tenorio-Gómez; Carmen de Sena-Tomás; Jose Pérez-Martín
Journal:  PLoS One       Date:  2015-09-14       Impact factor: 3.240

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