7 Publications
2022
Chromatin remodeling subunit BRM and valine regulate hematopoietic stem/progenitor cell function and self-renewal via intrinsic and extrinsic effects
Naidu, Samisubbu RRopa, JamesCooper, ScottHuang, Xinxin and
Leukemia, vol. 36, (no. 3), pp. 821-833, Mar 2022. | Journal Article
2019
Chromatin Remodeling Subunit Brm Regulates Hematopoietic Stem Cell Self-Renewal By Limiting Intracellular Valine Levels
Naidu, Samisubbu RNaidu, Samisubbu RNaidu, Samisubbu RNaidu, Samisubbu RCapitano, Maegan LCapitano, Maegan LCapitano, Maegan LCapitano, Maegan LCooper, ScottCooper, ScottCooper, ScottCooper, ScottHuang, XinxinHuang, XinxinHuang, XinxinHuang, XinxinBroxmeyer, Hal EBroxmeyer, Hal EBroxmeyer, Hal E and Broxmeyer, Hal E
Blood, vol. 134, (no. Supplement_1), pp. 3702, 2019-11-13. | Journal Article
2018
Lapachol inhibits glycolysis in cancer cells by targeting pyruvate kinase M2
Shankar Babu, ManiShankar Babu, ManiMahanta, SailendraMahanta, SailendraLakhter, Alexander JLakhter, Alexander JHato, TakashiHato, TakashiPaul, SubhankarPaul, SubhankarNaidu, Samisubbu R and Naidu, Samisubbu R
PloS one, vol. 13, (no. 2), pp. e0191419, 2018-00-00. | Journal Article
2017
Cyclic AMP-Epac signaling pathway contributes to repression of PUMA transcription in melanoma cells
Lakhter, Alexander J and Naidu, Samisubbu R
Melanoma research, vol. 27, (no. 5), pp. 416, 2017-10-00. | Journal Article
2016
Glucose-independent Acetate Metabolism Promotes Melanoma Cell Survival and Tumor Growth
Lakhter, Alexander JLakhter, Alexander JLakhter, Alexander JHamilton, JamesHamilton, JamesHamilton, JamesKonger, Raymond LKonger, Raymond LKonger, Raymond LBrustovetsky, NickolayBrustovetsky, NickolayBrustovetsky, NickolayBroxmeyer, Hal EBroxmeyer, Hal EBroxmeyer, Hal ENaidu, Samisubbu RNaidu, Samisubbu R and Naidu, Samisubbu R
The Journal of biological chemistry, vol. 291, (no. 42), pp. 21879, 2016-Oct-14. | Journal Article
2014
Ferroxitosis: A cell death from modulation of oxidative phosphorylation and PKM2-dependent glycolysis in melanoma
Lakhter, Alexander JLakhter, Alexander JLakhter, Alexander JLakhter, Alexander JLakhter, Alexander JHamilton, JamesHamilton, JamesHamilton, JamesHamilton, JamesHamilton, JamesDagher, Pierre CDagher, Pierre CDagher, Pierre CDagher, Pierre CDagher, Pierre CMukkamala, SureshMukkamala, SureshMukkamala, SureshMukkamala, SureshMukkamala, SureshHato, TakashiHato, TakashiHato, TakashiHato, TakashiHato, TakashiDong, X. CharlieDong, X. CharlieDong, X. CharlieDong, X CharlieDong, X. CharlieMayo, Lindsey DMayo, Lindsey DMayo, Lindsey DMayo, Lindsey DMayo, Lindsey DHarris, Robert AHarris, Robert AHarris, Robert AHarris, Robert AHarris, Robert AShekhar, AnanthaShekhar, AnanthaShekhar, AnanthaShekhar, AnanthaShekhar, AnanthaIvan, MirceaIvan, MirceaIvan, MirceaIvan, MirceaIvan, MirceaBrustovetsky, NickolayBrustovetsky, NickolayBrustovetsky, NickolayBrustovetsky, NickolayBrustovetsky, NickolayNaidu, Samisubbu RNaidu, Samisubbu RNaidu, Samisubbu RNaidu, Samisubbu R and Naidu, Samisubbu R
Oncotarget, vol. 5, (no. 24), pp. 12703, 2014-12-30. | Journal Article
2013
Chloroquine Promotes Apoptosis in Melanoma Cells by Inhibiting BH3 Domain–Mediated PUMA Degradation
Lakhter, Alexander JLakhter, Alexander JSahu, Ravi PSahu, Ravi PSun, YangSun, YangKaufmann, William KKaufmann, William KAndrophy, Elliot JAndrophy, Elliot JTravers, Jeffrey BTravers, Jeffrey BNaidu, Samisubbu R and Naidu, Samisubbu R
Journal of Investigative Dermatology, vol. 133, (no. 9), pp. 2254, September 2013. | Journal Article