Michael Lichten

Affiliations: 
National Cancer Institue-NIH 
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"Michael Lichten"
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Ziesel A, Weng Q, Ahuja JS, et al. (2022) Rad51-mediated interhomolog recombination during budding yeast meiosis is promoted by the meiotic recombination checkpoint and the conserved Pif1 helicase. Plos Genetics. 18: e1010407
Shodhan A, Xaver M, Wheeler D, et al. (2022) Turning coldspots into hotspots: targeted recruitment of axis protein Hop1 stimulates meiotic recombination in Saccharomyces cerevisiae. Genetics
Ahuja JS, Harvey CS, Wheeler DL, et al. (2021) Repeated strand invasion and extensive branch migration are hallmarks of meiotic recombination. Molecular Cell
Cohen M, Lichten M. (2020) C-terminal HA Tags Compromise Function and Exacerbate Phenotypes of Bloom's Helicase Homolog Sgs1 SUMOylation-Associated Mutants. G3 (Bethesda, Md.)
Kaur H, Krishnaprasad GN, Lichten M. (2019) Unresolved Recombination Intermediates Cause a -Dependent Cell Cycle Arrest in . Genetics
Hunt LJ, Ahmed EA, Kaur H, et al. (2019) S. cerevisiae Srs2 helicase ensures normal recombination intermediate metabolism during meiosis and prevents accumulation of Rad51 aggregates. Chromosoma
Shodhan A, Medhi D, Lichten M. (2019) Noncanonical Contributions of MutLγ to VDE-Initiated Crossovers During Meiosis. G3 (Bethesda, Md.)
Kaur H, Ahuja JS, Lichten M. (2018) Methods for Controlled Protein Depletion to Study Protein Function during Meiosis. Methods in Enzymology. 601: 331-357
Lichten M. (2017) Proteasomes on the chromosome. Cell Research. 27: 602-603
Medhi D, Goldman AS, Lichten M. (2016) Local chromosome context is a major determinant of crossover pathway biochemistry during budding yeast meiosis. Elife. 5
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