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Results: 1 to 20 of 119

Similar articles for PubMed (Select 18359284)

1.

Purification of two putative type II NADH dehydrogenases with different substrate specificities from alkaliphilic Bacillus pseudofirmus OF4.

Liu J, Krulwich TA, Hicks DB.

Biochim Biophys Acta. 2008 May;1777(5):453-61. doi: 10.1016/j.bbabio.2008.02.004. Epub 2008 Mar 5.

2.

Bacillus halodurans Strain C125 Encodes and Synthesizes Enzymes from Both Known Pathways To Form dUMP Directly from Cytosine Deoxyribonucleotides.

Oehlenschlæger CB, Løvgreen MN, Reinauer E, Lehtinen E, Pind ML, Harris P, Martinussen J, Willemoës M.

Appl Environ Microbiol. 2015 May 15;81(10):3395-404. doi: 10.1128/AEM.00268-15. Epub 2015 Mar 6.

PMID:
25746996
3.

The Staphylococcus aureus NuoL-like protein MpsA contributes to the generation of membrane potential.

Mayer S, Steffen W, Steuber J, Götz F.

J Bacteriol. 2015 Mar;197(5):794-806. doi: 10.1128/JB.02127-14. Epub 2014 Dec 1.

PMID:
25448817
4.

Tellurite-mediated damage to the Escherichia coli NDH-dehydrogenases and terminal oxidases in aerobic conditions.

Díaz-Vásquez WA, Abarca-Lagunas MJ, Cornejo FA, Pinto CA, Arenas FA, Vásquez CC.

Arch Biochem Biophys. 2015 Jan 15;566:67-75. doi: 10.1016/j.abb.2014.10.011. Epub 2014 Oct 25.

PMID:
25447814
5.

Dynamic interactive events in gene regulation using E. coli dehydrogenase as a model.

Puranik S, Purohit HJ.

Funct Integr Genomics. 2015 Mar;15(2):175-88. doi: 10.1007/s10142-014-0418-8. Epub 2014 Nov 30.

PMID:
25433707
6.

The consequence of an additional NADH dehydrogenase paralog on the growth of Gluconobacter oxydans DSM3504.

Kostner D, Luchterhand B, Junker A, Volland S, Daniel R, Büchs J, Liebl W, Ehrenreich A.

Appl Microbiol Biotechnol. 2015 Jan;99(1):375-86. doi: 10.1007/s00253-014-6069-9. Epub 2014 Sep 30.

PMID:
25267158
7.

Roles of the two type II NADH dehydrogenases in the survival of Mycobacterium tuberculosis in vitro.

Awasthy D, Ambady A, Narayana A, Morayya S, Sharma U.

Gene. 2014 Oct 15;550(1):110-6. doi: 10.1016/j.gene.2014.08.024. Epub 2014 Aug 13.

PMID:
25128581
8.

Characterization of the type 2 NADH:menaquinone oxidoreductases from Staphylococcus aureus and the bactericidal action of phenothiazines.

Schurig-Briccio LA, Yano T, Rubin H, Gennis RB.

Biochim Biophys Acta. 2014 Jul;1837(7):954-63. doi: 10.1016/j.bbabio.2014.03.017. Epub 2014 Apr 5.

9.

The c-ring ion binding site of the ATP synthase from Bacillus pseudofirmus OF4 is adapted to alkaliphilic lifestyle.

Preiss L, Langer JD, Hicks DB, Liu J, Yildiz O, Krulwich TA, Meier T.

Mol Microbiol. 2014 Jun;92(5):973-84. doi: 10.1111/mmi.12605. Epub 2014 Apr 24.

10.

Identification of a novel promoter gHp0169 for gene expression in Gluconobacter oxydans.

Shi L, Li K, Zhang H, Liu X, Lin J, Wei D.

J Biotechnol. 2014 Apr 10;175:69-74. doi: 10.1016/j.jbiotec.2014.01.035. Epub 2014 Feb 12.

PMID:
24530540
11.

Structure of the bacterial type II NADH dehydrogenase: a monotopic membrane protein with an essential role in energy generation.

Heikal A, Nakatani Y, Dunn E, Weimar MR, Day CL, Baker EN, Lott JS, Sazanov LA, Cook GM.

Mol Microbiol. 2014 Mar;91(5):950-64. doi: 10.1111/mmi.12507. Epub 2014 Jan 21.

PMID:
24444429
12.

Cardiolipin is dispensable for oxidative phosphorylation and non-fermentative growth of alkaliphilic Bacillus pseudofirmus OF4.

Liu J, Ryabichko S, Bogdanov M, Fackelmayer OJ, Dowhan W, Krulwich TA.

J Biol Chem. 2014 Jan 31;289(5):2960-71. doi: 10.1074/jbc.M113.536193. Epub 2013 Dec 13.

13.

Cloning and identification of a novel NhaD-type Na+/H+ antiporter from metagenomic DNA of the halophilic bacteria in soil samples around Daban Salt Lake.

Zhang H, Wang Z, Wang L, Mu R, Zou Z, Yuan K, Wang Y, Wu H, Jiang J, Yang L.

Extremophiles. 2014 Jan;18(1):89-98. doi: 10.1007/s00792-013-0600-2. Epub 2013 Dec 3.

PMID:
24297704
14.

Purification and functional reconstitution of a seven-subunit mrp-type na+/h+ antiporter.

Morino M, Suzuki T, Ito M, Krulwich TA.

J Bacteriol. 2014 Jan;196(1):28-35. doi: 10.1128/JB.01029-13. Epub 2013 Oct 18.

15.

[Cloning, expression and characterization of alcohol dehydrogenase and aldehyde dehydrogenase from Bacillus pseudofirmus OF4].

Ju J, Ma N, Zhao R, Liu J, Xu S, Zhao B.

Wei Sheng Wu Xue Bao. 2013 Apr 4;53(4):363-71. Chinese.

PMID:
23858711
16.

A novel alkaliphilic bacillus esterase belongs to the 13(th) bacterial lipolytic enzyme family.

Rao L, Xue Y, Zheng Y, Lu JR, Ma Y.

PLoS One. 2013;8(4):e60645. doi: 10.1371/journal.pone.0060645. Epub 2013 Apr 5.

17.

Alternate pathways for NADH oxidation in Thermus thermophilus using type 2 NADH dehydrogenases.

Venkatakrishnan P, Lencina AM, Schurig-Briccio LA, Gennis RB.

Biol Chem. 2013 May;394(5):667-76. doi: 10.1515/hsz-2012-0333.

PMID:
23370906
18.

Metagenomic cloning and characterization of Na⁺ transporters from Huamachi Salt Lake in China.

Gao M, Tao L, Chen S.

Microbiol Res. 2013 Feb 22;168(2):119-24. doi: 10.1016/j.micres.2012.06.004. Epub 2012 Dec 4.

19.

Identification of important charged residues for alkali cation exchange or pH regulation of NhaH, a Na(+)/H(+) antiporter of Halobacillus dabanensis.

Jiang J, Wang L, Zou Y, Lu W, Zhao B, Zhang B, Yang S, Yang L.

Biochim Biophys Acta. 2013 Mar;1828(3):997-1003. doi: 10.1016/j.bbamem.2012.11.015. Epub 2012 Nov 27.

20.

Roles of AtpI and two YidC-type proteins from alkaliphilic Bacillus pseudofirmus OF4 in ATP synthase assembly and nonfermentative growth.

Liu J, Hicks DB, Krulwich TA.

J Bacteriol. 2013 Jan;195(2):220-30. doi: 10.1128/JB.01493-12. Epub 2012 Nov 2.

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