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2020
Weskamp G, Tüshaus J, Li D, Feederle R, Maretzky T, Swendemann S, Falck-Pedersen E, McIlwain DR, Mak TW, Salmon JE et al..  2020.  ADAM17 stabilizes its interacting partner inactive Rhomboid 2 (iRhom2) but not inactive Rhomboid 1 (iRhom1).. J Biol Chem. 295(13):4350-4358.
Weskamp G, Tüshaus J, Li D, Feederle R, Maretzky T, Swendemann S, Falck-Pedersen E, McIlwain DR, Mak TW, Salmon JE et al..  2020.  ADAM17 stabilizes its interacting partner inactive Rhomboid 2 (iRhom2) but not inactive Rhomboid 1 (iRhom1).. J Biol Chem. 295(13):4350-4358.
Schrader SM, Vaubourgeix J, Nathan C.  2020.  Biology of antimicrobial resistance and approaches to combat it.. Sci Transl Med. 12(549)
Wang H, Wang C, Peng G, Yu D, Cui X-G, Sun Y-H, Ma X.  2020.  Capping Protein Regulator and Myosin 1 Linker 3 Is Required for Tumor Metastasis.. Mol Cancer Res. 18(2):240-252.
Zaveri A, Wang R, Botella L, Sharma R, Zhu L, Wallach JB, Song N, Jansen RS, Rhee KY, Ehrt S et al..  2020.  Depletion of the DarG antitoxin in Mycobacterium tuberculosis triggers the DNA-damage response and leads to cell death.. Mol Microbiol.
Zaveri A, Wang R, Botella L, Sharma R, Zhu L, Wallach JB, Song N, Jansen RS, Rhee KY, Ehrt S et al..  2020.  Depletion of the DarG antitoxin in Mycobacterium tuberculosis triggers the DNA-damage response and leads to cell death.. Mol Microbiol.
Zaveri A, Wang R, Botella L, Sharma R, Zhu L, Wallach JB, Song N, Jansen RS, Rhee KY, Ehrt S et al..  2020.  Depletion of the DarG antitoxin in Mycobacterium tuberculosis triggers the DNA-damage response and leads to cell death.. Mol Microbiol.
Matthews KA, Senagbe KM, Nötzel C, Gonzales CA, Tong X, Rijo-Ferreira F, Bhanu NV, Miguel-Blanco C, Lafuente-Monasterio MJose, Garcia BA et al..  2020.  Disruption of the Plasmodium falciparum Life Cycle through Transcriptional Reprogramming by Inhibitors of Jumonji Demethylases.. ACS Infect Dis. 6(5):1058-1075.
Siao MC, Borner J, Perkins SL, Deitsch KW, Kirkman LA.  2020.  Evolution of Host Specificity by Malaria Parasites through Altered Mechanisms Controlling Genome Maintenance.. mBio. 11(2)
Sanchez AM, Garg A, Shuman S, Schwer B.  2020.  Genetic interactions and transcriptomics implicate fission yeast CTD prolyl isomerase Pin1 as an agent of RNA 3' processing and transcription termination that functions via its effects on CTD phosphatase Ssu72.. Nucleic Acids Res. 48(9):4811-4826.
Sanchez AM, Garg A, Shuman S, Schwer B.  2020.  Genetic interactions and transcriptomics implicate fission yeast CTD prolyl isomerase Pin1 as an agent of RNA 3' processing and transcription termination that functions via its effects on CTD phosphatase Ssu72.. Nucleic Acids Res. 48(9):4811-4826.
Sanchez AM, Garg A, Shuman S, Schwer B.  2020.  Genetic interactions and transcriptomics implicate fission yeast CTD prolyl isomerase Pin1 as an agent of RNA 3' processing and transcription termination that functions via its effects on CTD phosphatase Ssu72.. Nucleic Acids Res. 48(9):4811-4826.
Garg A, Shuman S, Schwer B.  2020.  A genetic screen for suppressors of hyper-repression of the fission yeast PHO regulon by Pol2 CTD mutation T4A implicates inositol 1-pyrophosphates as agonists of precocious lncRNA transcription termination.. Nucleic Acids Res.
Garg A, Shuman S, Schwer B.  2020.  A genetic screen for suppressors of hyper-repression of the fission yeast PHO regulon by Pol2 CTD mutation T4A implicates inositol 1-pyrophosphates as agonists of precocious lncRNA transcription termination.. Nucleic Acids Res.
Schwer B, Sanchez AM, Shuman S.  2020.  Inactivation of fission yeast Erh1 de-represses pho1 expression: evidence that Erh1 is a negative regulator of prt lncRNA termination.. RNA. 26(10):1334-1344.
Schwer B, Sanchez AM, Shuman S.  2020.  Inactivation of fission yeast Erh1 de-represses pho1 expression: evidence that Erh1 is a negative regulator of prt lncRNA termination.. RNA. 26(10):1334-1344.
Schwer B, Sanchez AM, Shuman S.  2020.  Inactivation of fission yeast Erh1 de-represses pho1 expression: evidence that Erh1 is a negative regulator of prt lncRNA termination.. RNA. 26(10):1334-1344.
Yu EYoung, Zahid SS, Ganduri S, Sutherland JH, Hsu M, Holloman WK, Lue NF.  2020.  Structurally distinct telomere-binding proteins in Ustilago maydis execute non-overlapping functions in telomere replication, recombination, and protection.. Commun Biol. 3(1):777.
Song M, Wang C, Wang H, Zhang T, Li J, Benezra R, Chouchane L, Sun Y-H, Cui X-G, Ma X.  2020.  Targeting ubiquitin protein ligase E3 component N-recognin 5 in cancer cells induces a CD8+ T cell mediated immune response.. Oncoimmunology. 9(1):1746148.
Song M, Wang C, Wang H, Zhang T, Li J, Benezra R, Chouchane L, Sun Y-H, Cui X-G, Ma X.  2020.  Targeting ubiquitin protein ligase E3 component N-recognin 5 in cancer cells induces a CD8+ T cell mediated immune response.. Oncoimmunology. 9(1):1746148.
Gengenbacher M, Zimmerman MD, Sarathy JP, Kaya F, Wang H, Mina M, Carter C, Hossen MAmir, Su H, Trujillo C et al..  2020.  Tissue Distribution of Doxycycline in Animal Models of Tuberculosis.. Antimicrob Agents Chemother. 64(5)
Gengenbacher M, Zimmerman MD, Sarathy JP, Kaya F, Wang H, Mina M, Carter C, Hossen MAmir, Su H, Trujillo C et al..  2020.  Tissue Distribution of Doxycycline in Animal Models of Tuberculosis.. Antimicrob Agents Chemother. 64(5)
Gengenbacher M, Zimmerman MD, Sarathy JP, Kaya F, Wang H, Mina M, Carter C, Hossen MAmir, Su H, Trujillo C et al..  2020.  Tissue Distribution of Doxycycline in Animal Models of Tuberculosis.. Antimicrob Agents Chemother. 64(5)