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1 - 25 of 58 results for author:"Verdine G.L." in Literature citations

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Structural origins of DNA target selection and nucleobase extrusion by a DNA cytosine methyltransferase.

Didovyk A., Verdine G.L.

J. Biol. Chem. 287:40099-40105(2012) · Mapped (1)

Sequence-dependent structural variation in DNA undergoing intrahelical inspection by the DNA glycosylase MutM.

Sung R.J., Zhang M., Qi Y., Verdine G.L.

J. Biol. Chem. 287:18044-18054(2012) · UniProtKB (1)

Strandwise translocation of a DNA glycosylase on undamaged DNA.

Qi Y., Nam K., Spong M.C., Banerjee A., Sung R.J., Zhang M., Karplus M., Verdine G.L.

Proc. Natl. Acad. Sci. U.S.A. 109:1086-1091(2012) · UniProtKB (1)

Structure of the stapled p53 peptide bound to Mdm2.

Baek S., Kutchukian P.S., Verdine G.L., Huber R., Holak T.A., Lee K.W., Popowicz G.M.

J. Am. Chem. Soc. 134:103-106(2012) · Mapped (1)

Structure of Escherichia coli AlkA in complex with undamaged DNA.

Bowman B.R., Lee S., Wang S., Verdine G.L.

J. Biol. Chem. 285:35783-35791(2010) · Mapped (1)

Encounter and extrusion of an intrahelical lesion by a DNA repair enzyme.

Qi Y., Spong M.C., Nam K., Banerjee A., Jiralerspong S., Karplus M., Verdine G.L.

Nature 462:762-766(2009) · UniProtKB (1)

Entrapment and structure of an extrahelical guanine attempting to enter the active site of a bacterial DNA glycosylase, MutM.

Qi Y., Spong M.C., Nam K., Karplus M., Verdine G.L.

J. Biol. Chem. 285:1468-1478(2010) · UniProtKB (1)

Atomic substitution reveals the structural basis for substrate adenine recognition and removal by adenine DNA glycosylase.

Lee S., Verdine G.L.

Proc. Natl. Acad. Sci. U.S.A. 106:18497-18502(2009) · UniProtKB (1)

A structural model for the damage-sensing complex in bacterial nucleotide excision repair.

Pakotiprapha D., Liu Y., Verdine G.L., Jeruzalmi D.

J. Biol. Chem. 284:12837-12844(2009) · UniProtKB (2)

Synthesis and structure of duplex DNA containing the genotoxic nucleobase lesion N7-methylguanine.

Lee S., Bowman B.R., Ueno Y., Wang S., Verdine G.L.

J. Am. Chem. Soc. 130:11570-11571(2008) · Mapped (1)

Structure of the E. coli DNA glycosylase AlkA bound to the ends of duplex DNA: a system for the structure determination of lesion-containing DNA.

Bowman B.R., Lee S., Wang S., Verdine G.L.

Structure 16:1166-1174(2008) · Mapped (1)

Crystal structure of Bacillus stearothermophilus UvrA provides insight into ATP-modulated dimerization, UvrB interaction, and DNA binding.

Pakotiprapha D., Inuzuka Y., Bowman B.R., Moolenaar G.F., Goosen N., Jeruzalmi D., Verdine G.L.

Mol. Cell 29:122-133(2008) · UniProtKB (1)

Structural characterization of human 8-oxoguanine DNA glycosylase variants bearing active site mutations.

Radom C.T., Banerjee A., Verdine G.L.

J. Biol. Chem. 282:9182-9194(2007) · UniProtKB (1) · Mapped (12)

A stapled BID BH3 helix directly binds and activates BAX.

Walensky L.D., Pitter K., Morash J., Oh K.J., Barbuto S., Fisher J., Smith E., Verdine G.L., Korsmeyer S.J.

Mol. Cell 24:199-210(2006) · Mapped (19)

A nucleobase lesion remodels the interaction of its normal neighbor in a DNA glycosylase complex.

Banerjee A., Verdine G.L.

Proc. Natl. Acad. Sci. U.S.A. 103:15020-15025(2006) · Mapped (13)

Regulation of MLL1 H3K4 methyltransferase activity by its core components.

Dou Y., Milne T.A., Ruthenburg A.J., Lee S., Lee J.W., Verdine G.L., Allis C.D., Roeder R.G.

Nat. Struct. Mol. Biol. 13:713-719(2006) · Mapped (2)

Histone H3 recognition and presentation by the WDR5 module of the MLL1 complex.

Ruthenburg A.J., Wang W., Graybosch D.M., Li H., Allis C.D., Patel D.J., Verdine G.L.

Nat. Struct. Mol. Biol. 13:704-712(2006) · UniProtKB (1) · Mapped (1)

A base-excision DNA-repair protein finds intrahelical lesion bases by fast sliding in contact with DNA.

Blainey P.C., van Oijen A.M., Banerjee A., Verdine G.L., Xie X.S.

Proc. Natl. Acad. Sci. U.S.A. 103:5752-5757(2006) · Mapped (13)

Structure of a DNA glycosylase searching for lesions.

Banerjee A., Santos W.L., Verdine G.L.

Science 311:1153-1157(2006) · UniProtKB (1)

Crystal structure of Staphylococcus aureus tRNA adenosine deaminase TadA in complex with RNA.

Losey H.C., Ruthenburg A.J., Verdine G.L.

Nat. Struct. Mol. Biol. 13:153-159(2006) · UniProtKB (1)

A methylation-dependent electrostatic switch controls DNA repair and transcriptional activation by E. coli ada.

He C., Hus J.-C., Sun L.J., Zhou P., Norman D.P.G., Doetsch V., Wei H., Gross J.D., Lane W.S., Wagner G. et al.

Mol. Cell 20:117-129(2005) · UniProtKB (1)

Nucleotide-dependent domain movement in the ATPase domain of a human type IIA DNA topoisomerase.

Wei H., Ruthenburg A.J., Bechis S.K., Verdine G.L.

J. Biol. Chem. 280:37041-37047(2005) · UniProtKB (1)

A superhelical spiral in the Escherichia coli DNA gyrase A C-terminal domain imparts unidirectional supercoiling bias.

Ruthenburg A.J., Graybosch D.M., Huetsch J.C., Verdine G.L.

J. Biol. Chem. 280:26177-26184(2005) · UniProtKB (1)

Structure of a repair enzyme interrogating undamaged DNA elucidates recognition of damaged DNA.

Banerjee A., Yang W., Karplus M., Verdine G.L.

Nature 434:612-618(2005) · Mapped (13)

Structure of human cytidine deaminase bound to a potent inhibitor.

Chung S.J., Fromme J.C., Verdine G.L.

J. Med. Chem. 48:658-660(2005) · UniProtKB (1)

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