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CtpV: a putative copper exporter required for full virulence of Mycobacterium tuberculosis.

Ward SK, Abomoelak B, Hoye EA, Steinberg H, Talaat AM.

Mol Microbiol. 2010 Sep;77(5):1096-110. doi: 10.1111/j.1365-2958.2010.07273.x.


Evaluation of standard chemotherapy in the guinea pig model of tuberculosis.

Ordway DJ, Shanley CA, Caraway ML, Orme EA, Bucy DS, Hascall-Dove L, Henao-Tamayo M, Harton MR, Shang S, Ackart D, Kraft SL, Lenaerts AJ, Basaraba RJ, Orme IM.

Antimicrob Agents Chemother. 2010 May;54(5):1820-33. doi: 10.1128/AAC.01521-09. Epub 2010 Feb 16.


Mycobacterial outer membranes: in search of proteins.

Niederweis M, Danilchanka O, Huff J, Hoffmann C, Engelhardt H.

Trends Microbiol. 2010 Mar;18(3):109-16. doi: 10.1016/j.tim.2009.12.005. Epub 2010 Jan 8. Review.


A role for the ATP7A copper-transporting ATPase in macrophage bactericidal activity.

White C, Lee J, Kambe T, Fritsche K, Petris MJ.

J Biol Chem. 2009 Dec 4;284(49):33949-56. doi: 10.1074/jbc.M109.070201. Epub 2009 Oct 5.


Copper transport into the secretory pathway is regulated by oxygen in macrophages.

White C, Kambe T, Fulcher YG, Sachdev SW, Bush AI, Fritsche K, Lee J, Quinn TP, Petris MJ.

J Cell Sci. 2009 May 1;122(Pt 9):1315-21. doi: 10.1242/jcs.043216. Epub 2009 Apr 7.


A philosophy of anti-infectives as a guide in the search for new drugs for tuberculosis.

Nathan C, Gold B, Lin G, Stegman M, de Carvalho LP, Vandal O, Venugopal A, Bryk R.

Tuberculosis (Edinb). 2008 Aug;88 Suppl 1:S25-33. doi: 10.1016/S1472-9792(08)70034-9. Review.


Identification of a copper-binding metallothionein in pathogenic mycobacteria.

Gold B, Deng H, Bryk R, Vargas D, Eliezer D, Roberts J, Jiang X, Nathan C.

Nat Chem Biol. 2008 Oct;4(10):609-16. doi: 10.1038/nchembio.109. Epub 2008 Aug 24.


Identification of outer membrane proteins of Mycobacterium tuberculosis.

Song H, Sandie R, Wang Y, Andrade-Navarro MA, Niederweis M.

Tuberculosis (Edinb). 2008 Nov;88(6):526-44. doi: 10.1016/ Epub 2008 Apr 25.


Rv1698 of Mycobacterium tuberculosis represents a new class of channel-forming outer membrane proteins.

Siroy A, Mailaender C, Harder D, Koerber S, Wolschendorf F, Danilchanka O, Wang Y, Heinz C, Niederweis M.

J Biol Chem. 2008 Jun 27;283(26):17827-37. doi: 10.1074/jbc.M800866200. Epub 2008 Apr 22.


Tuberculous granulomas are hypoxic in guinea pigs, rabbits, and nonhuman primates.

Via LE, Lin PL, Ray SM, Carrillo J, Allen SS, Eum SY, Taylor K, Klein E, Manjunatha U, Gonzales J, Lee EG, Park SK, Raleigh JA, Cho SN, McMurray DN, Flynn JL, Barry CE 3rd.

Infect Immun. 2008 Jun;76(6):2333-40. doi: 10.1128/IAI.01515-07. Epub 2008 Mar 17.


The global responses of Mycobacterium tuberculosis to physiological levels of copper.

Ward SK, Hoye EA, Talaat AM.

J Bacteriol. 2008 Apr;190(8):2939-46. doi: 10.1128/JB.01847-07. Epub 2008 Feb 8.


Increased expression of host iron-binding proteins precedes iron accumulation and calcification of primary lung lesions in experimental tuberculosis in the guinea pig.

Basaraba RJ, Bielefeldt-Ohmann H, Eschelbach EK, Reisenhauer C, Tolnay AE, Taraba LC, Shanley CA, Smith EA, Bedwell CL, Chlipala EA, Orme IM.

Tuberculosis (Edinb). 2008 Jan;88(1):69-79. Epub 2007 Oct 17.


Who puts the tubercle in tuberculosis?

Russell DG.

Nat Rev Microbiol. 2007 Jan;5(1):39-47. Epub 2006 Dec 11. Review.


CsoR is a novel Mycobacterium tuberculosis copper-sensing transcriptional regulator.

Liu T, Ramesh A, Ma Z, Ward SK, Zhang L, George GN, Talaat AM, Sacchettini JC, Giedroc DP.

Nat Chem Biol. 2007 Jan;3(1):60-8. Epub 2006 Dec 3.


New insights into the function of granulomas in human tuberculosis.

Ulrichs T, Kaufmann SH.

J Pathol. 2006 Jan;208(2):261-9. Review.


The growth rate of Mycobacterium smegmatis depends on sufficient porin-mediated influx of nutrients.

Stephan J, Bender J, Wolschendorf F, Hoffmann C, Roth E, Mailänder C, Engelhardt H, Niederweis M.

Mol Microbiol. 2005 Nov;58(3):714-30.


Intracellular copper transport in mammals.

Prohaska JR, Gybina AA.

J Nutr. 2004 May;134(5):1003-6. Review.


Immunology of tuberculosis and implications in vaccine development.

Flynn JL.

Tuberculosis (Edinb). 2004;84(1-2):93-101. Review.


Molecular basis of bacterial outer membrane permeability revisited.

Nikaido H.

Microbiol Mol Biol Rev. 2003 Dec;67(4):593-656. Review.

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