Ban Y, Mai J, Li X, Mitchell-Flack M, Zhang T, Zhang L, Chouchane L, Ferrari M, Shen H, Ma X.
2017.
Targeting Autocrine CCL5-CCR5 Axis Reprograms Immunosuppressive Myeloid Cells and Reinvigorates Antitumor Immunity.. Cancer Res. 77(11):2857-2868.
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.
Lue NF, Bosoy D, Moriarty TJ, Autexier C, Altman B, Leng S.
2005.
Telomerase can act as a template- and RNA-independent terminal transferase.. Proc Natl Acad Sci U S A. 102(28):9778-83.
Hsu M, McEachern MJ, Dandjinou AT, Tzfati Y, Orr E, Blackburn EH, Lue NF.
2007.
Telomerase core components protect Candida telomeres from aberrant overhang accumulation.. Proc Natl Acad Sci U S A. 104(28):11682-7.
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)
Trevejo JM, Marino MW, Philpott N, Josien R, Richards EC, Elkon KB, Falck-Pedersen E.
2001.
TNF-alpha -dependent maturation of local dendritic cells is critical for activating the adaptive immune response to virus infection.. Proc Natl Acad Sci U S A. 98(21):12162-7.
Schnappinger D, Ehrt S, Voskuil MI, Liu Y, Mangan JA, Monahan IM, Dolganov G, Efron B, Butcher PD, Nathan C et al..
2003.
Transcriptional Adaptation of Mycobacterium tuberculosis within Macrophages: Insights into the Phagosomal Environment.. J Exp Med. 198(5):693-704.
Schnappinger D, Ehrt S, Voskuil MI, Liu Y, Mangan JA, Monahan IM, Dolganov G, Efron B, Butcher PD, Nathan C et al..
2003.
Transcriptional Adaptation of Mycobacterium tuberculosis within Macrophages: Insights into the Phagosomal Environment.. J Exp Med. 198(5):693-704.
Harris A, Borgnia MJ, Shi D, Bartesaghi A, He H, Pejchal R, Kang YKenneth, Depetris R, Marozsan AJ, Sanders RW et al..
2011.
Trimeric HIV-1 glycoprotein gp140 immunogens and native HIV-1 envelope glycoproteins display the same closed and open quaternary molecular architectures.. Proc Natl Acad Sci U S A. 108(28):11440-5.
Harris A, Borgnia MJ, Shi D, Bartesaghi A, He H, Pejchal R, Kang YKenneth, Depetris R, Marozsan AJ, Sanders RW et al..
2011.
Trimeric HIV-1 glycoprotein gp140 immunogens and native HIV-1 envelope glycoproteins display the same closed and open quaternary molecular architectures.. Proc Natl Acad Sci U S A. 108(28):11440-5.