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Items: 1 to 20 of 108

1.

Tagaturonate-fructuronate epimerase UxaE, a novel enzyme in the hexuronate catabolic network in Thermotoga maritima.

Rodionova IA, Scott DA, Grishin NV, Osterman AL, Rodionov DA.

Environ Microbiol. 2012 Nov;14(11):2920-34. doi: 10.1111/j.1462-2920.2012.02856.x. Epub 2012 Aug 23.

2.

Novel inositol catabolic pathway in Thermotoga maritima.

Rodionova IA, Leyn SA, Burkart MD, Boucher N, Noll KM, Osterman AL, Rodionov DA.

Environ Microbiol. 2013 Aug;15(8):2254-66. doi: 10.1111/1462-2920.12096. Epub 2013 Feb 27.

PMID:
23441918
3.

Regulation of Escherichia coli K-12 hexuronate system genes: exu regulon.

Portalier R, Robert-Baudouy J, Stoeber F.

J Bacteriol. 1980 Sep;143(3):1095-107.

4.

Toward pectin fermentation by Saccharomyces cerevisiae: expression of the first two steps of a bacterial pathway for D-galacturonate metabolism.

Huisjes EH, Luttik MA, Almering MJ, Bisschops MM, Dang DH, Kleerebezem M, Siezen R, van Maris AJ, Pronk JT.

J Biotechnol. 2012 Dec 31;162(2-3):303-10. doi: 10.1016/j.jbiotec.2012.10.003. Epub 2012 Oct 16.

PMID:
23079077
5.

Diversity and versatility of the Thermotoga maritima sugar kinome.

Rodionova IA, Yang C, Li X, Kurnasov OV, Best AA, Osterman AL, Rodionov DA.

J Bacteriol. 2012 Oct;194(20):5552-63. Epub 2012 Aug 10.

6.

Physiological and genetic regulation of the aldohexuronate transport system in Escherichia coli.

Nemoz G, Robert-Baudouy J, Stoeber F.

J Bacteriol. 1976 Aug;127(2):706-18.

7.

Glycerate 2-kinase of Thermotoga maritima and genomic reconstruction of related metabolic pathways.

Yang C, Rodionov DA, Rodionova IA, Li X, Osterman AL.

J Bacteriol. 2008 Mar;190(5):1773-82. Epub 2007 Dec 21.

8.

Hexuronate catabolism in Erwinia chrysanthemi.

Hugouvieux-Cotte-Pattat N, Robert-Baudouy J.

J Bacteriol. 1987 Mar;169(3):1223-31.

9.

At the periphery of the amidohydrolase superfamily: Bh0493 from Bacillus halodurans catalyzes the isomerization of D-galacturonate to D-tagaturonate.

Nguyen TT, Brown S, Fedorov AA, Fedorov EV, Babbitt PC, Almo SC, Raushel FM.

Biochemistry. 2008 Jan 29;47(4):1194-206. doi: 10.1021/bi7017738. Epub 2008 Jan 3.

PMID:
18171028
10.

The structural basis of substrate promiscuity in UDP-hexose 4-epimerase from the hyperthermophilic Eubacterium Thermotoga maritima.

Shin SM, Choi JM, di Luccio E, Lee YJ, Lee SJ, Lee SJ, Lee SH, Lee DW.

Arch Biochem Biophys. 2015 Nov 1;585:39-51. doi: 10.1016/j.abb.2015.08.025. Epub 2015 Sep 3.

PMID:
26344854
11.

Aldohexuronic acid catabolism by a soil Aeromonas.

Farmer JJ 3rd, Eagon RG.

J Bacteriol. 1969 Jan;97(1):97-106.

12.

Characterization of RNase P from Thermotoga maritima.

Paul R, Lazarev D, Altman S.

Nucleic Acids Res. 2001 Feb 15;29(4):880-5.

13.

GntP is the Escherichia coli Fructuronic acid transporter and belongs to the UxuR regulon.

Bates Utz C, Nguyen AB, Smalley DJ, Anderson AB, Conway T.

J Bacteriol. 2004 Nov;186(22):7690-6.

14.
15.

Transcriptional regulation of the carbohydrate utilization network in Thermotoga maritima.

Rodionov DA, Rodionova IA, Li X, Ravcheev DA, Tarasova Y, Portnoy VA, Zengler K, Osterman AL.

Front Microbiol. 2013 Aug 23;4:244. doi: 10.3389/fmicb.2013.00244. eCollection 2013.

16.

Evidence for lateral gene transfer between Archaea and bacteria from genome sequence of Thermotoga maritima.

Nelson KE, Clayton RA, Gill SR, Gwinn ML, Dodson RJ, Haft DH, Hickey EK, Peterson JD, Nelson WC, Ketchum KA, McDonald L, Utterback TR, Malek JA, Linher KD, Garrett MM, Stewart AM, Cotton MD, Pratt MS, Phillips CA, Richardson D, Heidelberg J, Sutton GG, Fleischmann RD, Eisen JA, White O, Salzberg SL, Smith HO, Venter JC, Fraser CM.

Nature. 1999 May 27;399(6734):323-9.

PMID:
10360571
18.

An expression-driven approach to the prediction of carbohydrate transport and utilization regulons in the hyperthermophilic bacterium Thermotoga maritima.

Conners SB, Montero CI, Comfort DA, Shockley KR, Johnson MR, Chhabra SR, Kelly RM.

J Bacteriol. 2005 Nov;187(21):7267-82.

19.
20.

Aspartate transcarbamylase from the hyperthermophilic eubacterium Thermotoga maritima: fused catalytic and regulatory polypeptides form an allosteric enzyme.

Chen P, Van Vliet F, Van De Casteele M, Legrain C, Cunin R, Glansdorff N.

J Bacteriol. 1998 Dec;180(23):6389-91.

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