M K. Raghuraman
Affiliations: | Molecular and Cellular Biology | University of Washington, Seattle, Seattle, WA |
Area:
Molecular Biology, Genetics, Cell Biology, BiochemistryWebsite:
http://fangman-brewer.genetics.washington.edu/Google:
"M Raghuraman"Bio:
https://books.google.com/books?id=v4UvAQAAIAAJ
Mean distance: (not calculated yet)
Parents
Sign in to add mentorThomas R. Cech | grad student | 1990 | CU Boulder | |
(Macronuclear telomeric nucleoprotein complexes of Oxytricha nova) |
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Publications
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Brewer BJ, Dunham MJ, Raghuraman MK. (2024) A unifying model that explains the origins of human inverted copy number variants. Plos Genetics. 20: e1011091 |
Martin R, Espinoza CY, Large CRL, et al. (2024) Template switching between the leading and lagging strands at replication forks generates inverted copy number variants through hairpin-capped extrachromosomal DNA. Plos Genetics. 20: e1010850 |
Kwan EX, Alvino GM, Lynch KL, et al. (2023) Ribosomal DNA replication time coordinates completion of genome replication and anaphase in yeast. Cell Reports. 42: 112161 |
Hoerr RE, Eng A, Payen C, et al. (2023) Hotspot of de novo telomere addition stabilizes linear amplicons in yeast grown in sulfate-limiting conditions. Genetics |
Kwan EX, Alvino GM, Queitsch C, et al. (2020) Small but greedy: a minimal rDNA array outcompetes the genome for replication initiation The Faseb Journal. 34: 1-1 |
Lynch KL, Alvino GM, Kwan EX, et al. (2019) The effects of manipulating levels of replication initiation factors on origin firing efficiency in yeast. Plos Genetics. 15: e1008430 |
Sanchez JC, Ollodart A, Large CRL, et al. (2019) Phenotypic and Genotypic Consequences of CRISPR/Cas9 Editing of the Replication Origins in the rDNA of . Genetics |
Sanchez JC, Kwan EX, Pohl TJ, et al. (2017) Defective replication initiation results in locus specific chromosome breakage and a ribosomal RNA deficiency in yeast. Plos Genetics. 13: e1007041 |
Kwan EX, Wang XS, Amemiya HM, et al. (2016) rDNA Copy Number Variants Are Frequent Passenger Mutations in S. cerevisiae Deletion Collections and De Novo Transformants. G3 (Bethesda, Md.) |
Brewer BJ, Payen C, Di Rienzi SC, et al. (2015) Origin-Dependent Inverted-Repeat Amplification: Tests of a Model for Inverted DNA Amplification. Plos Genetics. 11: e1005699 |