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Recent Publications
Pradhan, M., Govindaraju, A., Jagdish, A., & Christensen, S. M. (2020). The linker region of LINEs modulates DNA cleavage and DNA polymerization. Anal Biochem, 603, 113809. doi:10.1016/j.ab.2020.113809 <LINK>
Markova, D. N., Christensen, S. M., & Betrán, E. (2019). Telomere-Specialized Retroelements in Drosophila: Adaptive Symbionts of the Genome, Neutral, or in Conflict. Bioessays, e1900154. doi:10.1002/bies.201900154 <LINK>
Khadgi,B.B., Govindaraju,A. and Christensen,S.M. (2019) Completion of LINE integration involves an open ‘4-way’ branched DNA intermediate. Nucleic Acids Res <LINK>
M. M. Mahbub, S. M. Chowdhury, S. M. Christensen. (2017) Globular domain structure and function of restriction-like-endonuclease LINEs: similarities to eukaryotic splicing factor Prp8. Mob DNA 8, 16. DOI 10.1186/s13100-017-0097-9. <LINK>
A. Govindaraju, J. D. Cortez, B. Reveal, S. M. Christensen. (2016) Endonuclease domain of non-LTR retrotransposons: loss-of-function mutants and modeling of the R2Bm endonuclease. Nucleic Acids Res 44, 3276. DOI 10.1093/nar/gkw134. <LINK>
Older Publications via Google Scholar <LINK>
Pradhan, M., Govindaraju, A., Jagdish, A., & Christensen, S. M. (2020). The linker region of LINEs modulates DNA cleavage and DNA polymerization. Anal Biochem, 603, 113809. doi:10.1016/j.ab.2020.113809 <LINK>
Markova, D. N., Christensen, S. M., & Betrán, E. (2019). Telomere-Specialized Retroelements in Drosophila: Adaptive Symbionts of the Genome, Neutral, or in Conflict. Bioessays, e1900154. doi:10.1002/bies.201900154 <LINK>
Khadgi,B.B., Govindaraju,A. and Christensen,S.M. (2019) Completion of LINE integration involves an open ‘4-way’ branched DNA intermediate. Nucleic Acids Res <LINK>
M. M. Mahbub, S. M. Chowdhury, S. M. Christensen. (2017) Globular domain structure and function of restriction-like-endonuclease LINEs: similarities to eukaryotic splicing factor Prp8. Mob DNA 8, 16. DOI 10.1186/s13100-017-0097-9. <LINK>
A. Govindaraju, J. D. Cortez, B. Reveal, S. M. Christensen. (2016) Endonuclease domain of non-LTR retrotransposons: loss-of-function mutants and modeling of the R2Bm endonuclease. Nucleic Acids Res 44, 3276. DOI 10.1093/nar/gkw134. <LINK>
Older Publications via Google Scholar <LINK>