Nucleic Acid Biology and Chemistry Research Program
High-Impact Journal Publications
Kim N,Jinks-Robertson S. dUTP incorporation into genomic DNA is linked to transcription in yeast., , (1150-3) - Nature
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Celniker SE,Dillon LA,Gerstein MB,Gunsalus KC,Henikoff S,Karpen GH,Kellis M,Lai EC,Lieb JD,MacAlpine DM,Micklem G,Piano F,Snyder M,Stein L,White KP,Waterston RH. Unlocking the secrets of the genome., , (927-30) - Nature No abstract available [
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Kadyrov FA,Genschel J,Fang Y,Penland E,Edelmann W,Modrich P. A possible mechanism for exonuclease 1-independent eukaryotic mismatch repair., , (8495-500) - Proceedings of the National Academy of Sciences of the United States of America
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Marengo MS,Garcia-Blanco MA. Shedding UV light on alternative splicing., , (600-2) - Cell
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Sessions OM,Barrows NJ,Souza-Neto JA,Robinson TJ,Hershey CL,Rodgers MA,Ramirez JL,Dimopoulos G,Yang PL,Pearson JL,Garcia-Blanco MA. Discovery of insect and human dengue virus host factors., , (1047-50) - Nature
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Lehner K,Jinks-Robertson S. The mismatch repair system promotes DNA polymerase {zeta}-dependent translesion synthesis in yeast., . Proceedings of the National Academy of Sciences of the United States of America
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Cullen BR. Viral RNAs: lessons from the enemy., , (592-7) - Cell
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Nicchitta CV. Cell biology: How to combat stress., , (668-9) - Nature No abstract available [
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Cullen BR. Viral and cellular messenger RNA targets of viral microRNAs., , (421-5) - Nature
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Nimonkar AV,Ozsoy AZ,Genschel J,Modrich P,Kowalczykowski SC. Human exonuclease 1 and BLM helicase interact to resect DNA and initiate DNA repair., , (16906-11) - Proceedings of the National Academy of Sciences of the United States of America
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Argueso JL,Westmoreland J,Mieczkowski PA,Gawel M,Petes TD,Resnick MA. Double-strand breaks associated with repetitive DNA can reshape the genome., , (11845-50) - Proceedings of the National Academy of Sciences of the United States of America
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Umbach JL,Kramer MF,Jurak I,Karnowski HW,Coen DM,Cullen BR. MicroRNAs expressed by herpes simplex virus 1 during latent infection regulate viral mRNAs., . Nature
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Long DT,Kreuzer KN. Regression supports two mechanisms of fork processing in phage T4., , (6852-7) - Proceedings of the National Academy of Sciences of the United States of America
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Gottwein E,Mukherjee N,Sachse C,Frenzel C,Majoros WH,Chi JT,Braich R,Manoharan M,Soutschek J,Ohler U,Cullen BR. A viral microRNA functions as an orthologue of cellular miR-155., , (1096-9) - Nature
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Park EA,Macalpine DM,Orr-Weaver TL. Drosophila follicle cell amplicons as models for metazoan DNA replication: A cyclinE mutant exhibits increased replication fork elongation., . Proceedings of the National Academy of Sciences of the United States of America
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Giangrande PH,Zhang J,Tanner A,Eckhart AD,Rempel RE,Andrechek ER,Layzer JM,Keys JR,Hagen PO,Nevins JR,Koch WJ,Sullenger BA. Distinct roles of E2F proteins in vascular smooth muscle cell proliferation and intimal hyperplasia., , (12988-93) - Proceedings of the National Academy of Sciences of the United States of America
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Pluciennik A,Modrich P. Protein roadblocks and helix discontinuities are barriers to the initiation of mismatch repair., . Proceedings of the National Academy of Sciences of the United States of America
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Kow YW,Bao G,Reeves JW,Jinks-Robertson S,Crouse GF. Oligonucleotide transformation of yeast reveals mismatch repair complexes to be differentially active on DNA replication strands., , (11352-7) - Proceedings of the National Academy of Sciences of the United States of America
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Simarro M,Mauger D,Rhee K,Pujana MA,Kedersha NL,Yamasaki S,Cusick ME,Vidal M,Garcia-Blanco MA,Anderson P. Fas-activated serine/threonine phosphoprotein (FAST) is a regulator of alternative splicing., . Proceedings of the National Academy of Sciences of the United States of America
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Smiley RD,Collins TR,Hammes GG,Hsieh TS. Single-molecule measurements of the opening and closing of the DNA gate by eukaryotic topoisomerase II., . Proceedings of the National Academy of Sciences of the United States of America
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Mieczkowski PA,Dominska M,Buck MJ,Lieb JD,Petes TD. Loss of a histone deacetylase dramatically alters the genomic distribution of Spo11p-catalyzed DNA breaks in Saccharomyces cerevisiae., , (3955-60) - Proceedings of the National Academy of Sciences of the United States of America
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