Elena A. Kouzminova, Ph.D.

Affiliations: 
2000 University of Oregon, Eugene, OR, United States 
Area:
Molecular Biology
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"Elena Kouzminova"

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Eric Selker grad student 2000 University of Oregon (Neurotree)
 (Isolation and characterization of a DNA-methyltransferase gene, dim-2, from Neurospora crassa.)
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Publications

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Kouzminova EA, Kuzminov A. (2021) Ultraviolet-induced RNA:DNA hybrids interfere with chromosomal DNA synthesis. Nucleic Acids Research
Cronan GE, Kouzminova EA, Kuzminov A. (2019) Near-continuously synthesized leading strands in are broken by ribonucleotide excision. Proceedings of the National Academy of Sciences of the United States of America
Kouzminova EA, Kadyrov FF, Kuzminov A. (2017) RNase HII saves rnhA mutant Escherichia coli from R-loop-associated chromosomal fragmentation. Journal of Molecular Biology
Khan SR, Mahaseth T, Kouzminova EA, et al. (2016) Static and Dynamic Factors Limit Chromosomal Replication Complexity in Escherichia coli, Avoiding Dangers of Runaway Overreplication. Genetics
Rotman E, Khan SR, Kouzminova E, et al. (2014) Replication fork inhibition in seqA mutants of Escherichia coli triggers replication fork breakage. Molecular Microbiology. 93: 50-64
Rotman E, Kouzminova E, Plunkett G, et al. (2012) Genome of Enterobacteriophage Lula/phi80 and insights into its ability to spread in the laboratory environment. Journal of Bacteriology. 194: 6802-17
Kouzminova EA, Kuzminov A. (2012) Chromosome demise in the wake of ligase-deficient replication. Molecular Microbiology. 84: 1079-96
Ting H, Kouzminova EA, Kuzminov A. (2008) Synthetic lethality with the dut defect in Escherichia coli reveals layers of DNA damage of increasing complexity due to uracil incorporation. Journal of Bacteriology. 190: 5841-54
Kouzminova EA, Kuzminov A. (2008) Patterns of chromosomal fragmentation due to uracil-DNA incorporation reveal a novel mechanism of replication-dependent double-stranded breaks. Molecular Microbiology. 68: 202-15
Kouzminova EA, Kuzminov A. (2006) Fragmentation of replicating chromosomes triggered by uracil in DNA. Journal of Molecular Biology. 355: 20-33
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