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Items: 1 to 20 of 114

1.

Divalent metal ion-based catalytic mechanism of the Nudix hydrolase Orf153 (YmfB) from Escherichia coli.

Hong MK, Ribeiro AJ, Kim JK, Ngo HP, Kim J, Lee CH, Ahn YJ, Fernandes PA, Li Q, Ramos MJ, Kang LW.

Acta Crystallogr D Biol Crystallogr. 2014 May;70(Pt 5):1297-310. doi: 10.1107/S1399004714002570. Epub 2014 Apr 29.

PMID:
24816099
2.

Three new Nudix hydrolases from Escherichia coli.

Xu W, Dunn CA, O'handley SF, Smith DL, Bessman MJ.

J Biol Chem. 2006 Aug 11;281(32):22794-8. Epub 2006 Jun 9.

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Structures and mechanisms of Nudix hydrolases.

Mildvan AS, Xia Z, Azurmendi HF, Saraswat V, Legler PM, Massiah MA, Gabelli SB, Bianchet MA, Kang LW, Amzel LM.

Arch Biochem Biophys. 2005 Jan 1;433(1):129-43. Review.

PMID:
15581572
6.

The structure of ADP-ribose pyrophosphatase reveals the structural basis for the versatility of the Nudix family.

Gabelli SB, Bianchet MA, Bessman MJ, Amzel LM.

Nat Struct Biol. 2001 May;8(5):467-72.

PMID:
11323725
7.

Structure and mechanism of GDP-mannose glycosyl hydrolase, a Nudix enzyme that cleaves at carbon instead of phosphorus.

Gabelli SB, Bianchet MA, Azurmendi HF, Xia Z, Sarawat V, Mildvan AS, Amzel LM.

Structure. 2004 Jun;12(6):927-35.

8.

Crystallization and preliminary diffraction studies of Nudix hydrolase YmfB from Escherichia coli K-1.

Hong MK, Kim JK, Ahn YJ, Kang LW.

Protein Pept Lett. 2009;16(1):101-4.

PMID:
19149682
9.
10.

Structure and mechanism of MT-ADPRase, a nudix hydrolase from Mycobacterium tuberculosis.

Kang LW, Gabelli SB, Cunningham JE, O'Handley SF, Amzel LM.

Structure. 2003 Aug;11(8):1015-23.

11.

Structure of a coenzyme A pyrophosphatase from Deinococcus radiodurans: a member of the Nudix family.

Kang LW, Gabelli SB, Bianchet MA, Xu WL, Bessman MJ, Amzel LM.

J Bacteriol. 2003 Jul;185(14):4110-8.

12.

Structural studies of the Nudix hydrolase DR1025 from Deinococcus radiodurans and its ligand complexes.

Ranatunga W, Hill EE, Mooster JL, Holbrook EL, Schulze-Gahmen U, Xu W, Bessman MJ, Brenner SE, Holbrook SR.

J Mol Biol. 2004 May 21;339(1):103-16.

PMID:
15123424
13.

Structural studies of the Nudix GDP-mannose hydrolase from E. coli reveals a new motif for mannose recognition.

Boto AN, Xu W, Jakoncic J, Pannuri A, Romeo T, Bessman MJ, Gabelli SB, Amzel LM.

Proteins. 2011 Aug;79(8):2455-66. doi: 10.1002/prot.23069. Epub 2011 Jun 2.

14.

Structures of rat cytosolic PEPCK: insight into the mechanism of phosphorylation and decarboxylation of oxaloacetic acid.

Sullivan SM, Holyoak T.

Biochemistry. 2007 Sep 4;46(35):10078-88. Epub 2007 Aug 9.

PMID:
17685635
15.

Structure and function of the E. coli dihydroneopterin triphosphate pyrophosphatase: a Nudix enzyme involved in folate biosynthesis.

Gabelli SB, Bianchet MA, Xu W, Dunn CA, Niu ZD, Amzel LM, Bessman MJ.

Structure. 2007 Aug;15(8):1014-22.

16.

X-ray, NMR, and mutational studies of the catalytic cycle of the GDP-mannose mannosyl hydrolase reaction.

Gabelli SB, Azurmendi HF, Bianchet MA, Amzel LM, Mildvan AS.

Biochemistry. 2006 Sep 26;45(38):11290-303.

PMID:
16981689
17.

Kinetic, dynamic, ligand binding properties, and structural models of a dual-substrate specific nudix hydrolase from Schizosaccharomyces pombe.

Garza JA, Ilangovan U, Hinck AP, Barnes LD.

Biochemistry. 2009 Jul 7;48(26):6224-39. doi: 10.1021/bi802266g.

PMID:
19462967
18.

Mechanism of the Escherichia coli ADP-ribose pyrophosphatase, a Nudix hydrolase.

Gabelli SB, Bianchet MA, Ohnishi Y, Ichikawa Y, Bessman MJ, Amzel LM.

Biochemistry. 2002 Jul 30;41(30):9279-85.

PMID:
12135348
19.

Structural snapshots of Escherichia coli histidinol phosphate phosphatase along the reaction pathway.

Rangarajan ES, Proteau A, Wagner J, Hung MN, Matte A, Cygler M.

J Biol Chem. 2006 Dec 8;281(49):37930-41. Epub 2006 Sep 11.

20.

Molecular mechanism of the Thermus thermophilus ADP-ribose pyrophosphatase from mutational and kinetic studies.

Ooga T, Yoshiba S, Nakagawa N, Kuramitsu S, Masui R.

Biochemistry. 2005 Jul 5;44(26):9320-9.

PMID:
15981998
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