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Items: 19

1.

Red Light Modulates Ultraviolet-Induced Gene Expression in the Epidermis of Hairless Mice.

Myakishev-Rempel M, Stadler I, Polesskaya O, Motiwala AS, Nardia FB, Mintz B, Baranova A, Zavislan J, Lanzafame RJ.

Photomed Laser Surg. 2015 Oct;33(10):498-503. doi: 10.1089/pho.2015.3916. Epub 2015 Sep 23.

2.

Mycobacterium tuberculosis dihydrofolate reductase is not a target relevant to the antitubercular activity of isoniazid.

Wang F, Jain P, Gulten G, Liu Z, Feng Y, Ganesula K, Motiwala AS, Ioerger TR, Alland D, Vilchèze C, Jacobs WR Jr, Sacchettini JC.

Antimicrob Agents Chemother. 2010 Sep;54(9):3776-82. doi: 10.1128/AAC.00453-10. Epub 2010 Jun 21.

3.

Mutations in extensively drug-resistant Mycobacterium tuberculosis that do not code for known drug-resistance mechanisms.

Motiwala AS, Dai Y, Jones-López EC, Hwang SH, Lee JS, Cho SN, Via LE, Barry CE, Alland D.

J Infect Dis. 2010 Mar 15;201(6):881-8. doi: 10.1086/650999.

4.

Mycobacterium tuberculosis ecology in Venezuela: epidemiologic correlates of common spoligotypes and a large clonal cluster defined by MIRU-VNTR-24.

Abadía E, Sequera M, Ortega D, Méndez MV, Escalona A, Da Mata O, Izarra E, Rojas Y, Jaspe R, Motiwala AS, Alland D, de Waard J, Takiff HE.

BMC Infect Dis. 2009 Aug 6;9:122. doi: 10.1186/1471-2334-9-122.

5.

Convergent evolutionary analysis identifies significant mutations in drug resistance targets of Mycobacterium tuberculosis.

Hazbón MH, Motiwala AS, Cavatore M, Brimacombe M, Whittam TS, Alland D.

Antimicrob Agents Chemother. 2008 Sep;52(9):3369-76. doi: 10.1128/AAC.00309-08. Epub 2008 Jun 30.

6.

Rifampin resistance, Beijing-W clade-single nucleotide polymorphism cluster group 2 phylogeny, and the Rv2629 191-C allele in Mycobacterium tuberculosis strains.

Chakravorty S, Aladegbami B, Motiwala AS, Dai Y, Safi H, Brimacombe M, Helb D, Alland D.

J Clin Microbiol. 2008 Aug;46(8):2555-60. doi: 10.1128/JCM.00666-08. Epub 2008 Jun 11.

7.

Variation in virulence among clades of Escherichia coli O157:H7 associated with disease outbreaks.

Manning SD, Motiwala AS, Springman AC, Qi W, Lacher DW, Ouellette LM, Mladonicky JM, Somsel P, Rudrik JT, Dietrich SE, Zhang W, Swaminathan B, Alland D, Whittam TS.

Proc Natl Acad Sci U S A. 2008 Mar 25;105(12):4868-73. doi: 10.1073/pnas.0710834105. Epub 2008 Mar 10.

8.

Antibiotic resistance and single-nucleotide polymorphism cluster grouping type in a multinational sample of resistant Mycobacterium tuberculosis isolates.

Brimacombe M, Hazbon M, Motiwala AS, Alland D.

Antimicrob Agents Chemother. 2007 Nov;51(11):4157-9. Epub 2007 Sep 10.

9.

Role of large sequence polymorphisms (LSPs) in generating genomic diversity among clinical isolates of Mycobacterium tuberculosis and the utility of LSPs in phylogenetic analysis.

Alland D, Lacher DW, Hazbón MH, Motiwala AS, Qi W, Fleischmann RD, Whittam TS.

J Clin Microbiol. 2007 Jan;45(1):39-46. Epub 2006 Nov 1.

10.

Comparative transcriptional analysis of human macrophages exposed to animal and human isolates of Mycobacterium avium subspecies paratuberculosis with diverse genotypes.

Motiwala AS, Janagama HK, Paustian ML, Zhu X, Bannantine JP, Kapur V, Sreevatsan S.

Infect Immun. 2006 Nov;74(11):6046-56.

11.

Current understanding of the genetic diversity of Mycobacterium avium subsp. paratuberculosis.

Motiwala AS, Li L, Kapur V, Sreevatsan S.

Microbes Infect. 2006 Apr;8(5):1406-18. Epub 2006 Jan 26. Review.

PMID:
16697677
12.

Probing genomic diversity and evolution of Escherichia coli O157 by single nucleotide polymorphisms.

Zhang W, Qi W, Albert TJ, Motiwala AS, Alland D, Hyytia-Trees EK, Ribot EM, Fields PI, Whittam TS, Swaminathan B.

Genome Res. 2006 Jun;16(6):757-67. Epub 2006 Apr 10.

13.

Global phylogeny of Mycobacterium tuberculosis based on single nucleotide polymorphism (SNP) analysis: insights into tuberculosis evolution, phylogenetic accuracy of other DNA fingerprinting systems, and recommendations for a minimal standard SNP set.

Filliol I, Motiwala AS, Cavatore M, Qi W, Hazbón MH, Bobadilla del Valle M, Fyfe J, García-García L, Rastogi N, Sola C, Zozio T, Guerrero MI, León CI, Crabtree J, Angiuoli S, Eisenach KD, Durmaz R, Joloba ML, Rendón A, Sifuentes-Osornio J, Ponce de León A, Cave MD, Fleischmann R, Whittam TS, Alland D.

J Bacteriol. 2006 Jan;188(2):759-72. Erratum in: J Bacteriol. 2006 Apr;188(8):3162-3.

14.

Rapid detection and typing of strains of Mycobacterium avium subsp. paratuberculosis from broth cultures.

Motiwala AS, Strother M, Theus NE, Stich RW, Byrum B, Shulaw WP, Kapur V, Sreevatsan S.

J Clin Microbiol. 2005 May;43(5):2111-7.

15.

Evaluation of multiple genomic targets for identification and confirmation of Mycobacterium avium subsp. paratuberculosis isolates using real-time PCR.

Rajeev S, Zhang Y, Sreevatsan S, Motiwala AS, Byrum B.

Vet Microbiol. 2005 Feb 25;105(3-4):215-21. Epub 2004 Dec 22.

PMID:
15708818
16.

Molecular epidemiology of Mycobacterium avium subsp. paratuberculosis isolates recovered from wild animal species.

Motiwala AS, Amonsin A, Strother M, Manning EJ, Kapur V, Sreevatsan S.

J Clin Microbiol. 2004 Apr;42(4):1703-12.

17.

Multilocus short sequence repeat sequencing approach for differentiating among Mycobacterium avium subsp. paratuberculosis strains.

Amonsin A, Li LL, Zhang Q, Bannantine JP, Motiwala AS, Sreevatsan S, Kapur V.

J Clin Microbiol. 2004 Apr;42(4):1694-702.

18.

Evaluation of two recovery methods for detection of Mycobacterium avium subsp. paratuberculosis by PCR: direct-dilution--centrifugation and C(18)-carboxypropylbetaine processing.

Ozbek A, Michel FC, Strother M, Motiwala AS, Byrum BR, Shulaw WP, Thornton CG, Sreevatsan S.

FEMS Microbiol Lett. 2003 Dec 12;229(2):145-51.

19.

Molecular epidemiology of Mycobacterium avium subsp. paratuberculosis: evidence for limited strain diversity, strain sharing, and identification of unique targets for diagnosis.

Motiwala AS, Strother M, Amonsin A, Byrum B, Naser SA, Stabel JR, Shulaw WP, Bannantine JP, Kapur V, Sreevatsan S.

J Clin Microbiol. 2003 May;41(5):2015-26.

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