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    AtPoiA, a homogue of mammalian DNA polymerase in Arabidopsis thaliana, is involved in the repair of UV-B induced DNA damage through the dark repair pathway

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    Date
    2011-02
    Author
    Roy, Sujit
    Roy Choudhury, Swarup
    Singh, Sanjay Kumar
    Das, Kali Pada
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    Abstract
    Plants are constantly exposed to a wide range of environmental genotoxic stress factors including obligatory exposure to UV radiation in sunlight. Here, we report the functional characterization of a DNA repair protein, AtPol lambda, a homolog of mammalian DNA polymerase lambda in Arabidopsis, in relation to its role in repair of UV-B-induced DNA damage during early stages of seedling development. The abundance of the AtPol lambda transcript and the protein levels were distinctly increased in response to UV-B irradiation in 6-day-old wild-type seedlings. Growth of atpol lambda mutant seedlings, deficient in AtPol lambda expression, was more sensitive to UV-B radiation compared with wild-type plants when seeds were exposed to UV-B radiation before germination. The atpol lambda mutants showed accumulation of relatively higher amounts of DNA lesions than wild-type plants following UV-B exposure and were less proficient in repair of UV-induced DNA damage. Increased accumulation of AtPol lambda protein in UV-B-irradiated 6-day-old wild-type seedlings during the dark recovery period has indicated a possible role for the protein in repair of UV-B-induced lesions in the dark. Overexpression of AtPol lambda in the atpol lambda mutant line partially complemented the repair proficiency of UV-B-induced DNA damage. In vitro repair synthesis assays using whole-cell extracts from the wild-type and atpol lambda mutant line have further demonstrated the role of AtPol lambda in repair synthesis of UV-B-damaged DNA in the dark through an excision repair mechanism. Overall, our results have indicated the possible involvement of AtPol lambda in a plant's response for repair of UV-B-mediated DNA damage during seedling development.
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    Journal Link:
    http://www.ncbi.nlm.nih.gov/pubmed/21227935
    ISI Web of Science: Citation and Full Text Link:
    http://apps.webofknowledge.com/full_record.do?product=UA&search_mode=Refine&qid=54&SID=Q2Loa7nN3PPehlbP571&page=1&doc=2
    Scopus: Citation and Full Text Link:
    http://www.scopus.com/record/display.url?eid=2-s2.0-79951566254&origin=resultslist&sort=plf-f&src=s&st1=DNA+polymerase+%CE%BB+in+Arabidopsis+thaliana&nlo=&nlr=&nls=&sid=gQYiDLB3NTc0vsrUh5HBaYc%3a560&sot=b&sdt=sisr&sl=45&s=ALL%28DNA+polymerase+%CE%BB+in+Arabidopsis+thaliana%29&ref=%28Das%2c+K.P.%29&relpos=6&relpos=6&searchTerm=%28ALL%28DNA%20polymerase%20%CE%BB%20in%20Arabidopsis%20thaliana%29%29%20AND%20%28Das,%20K.P.%29#
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