Anjana Rao
Affiliations: | Harvard University, Cambridge, MA, United States |
Area:
Molecular Biology, BiochemistryWebsite:
http://www.lji.org/faculty-staff/anjana-rao/Google:
"Anjana Rao"Bio:
http://www.nasonline.org/member-directory/members/20015146.html
http://www.jbc.org/content/254/9/3503.short
Parents
Sign in to add mentorGuido Guidotti | grad student | 1978 | Harvard | |
(The reactive sulphydryl groups of the band 3 polypeptide of human erythrocyte membranes.) | ||||
Harvey Cantor | post-doc | 1979- | Dana-Farber Cancer Institute and Harvard Medical School |
Children
Sign in to add traineeErik Ehinger | grad student | 2019- | La Jolla Institute for Allergy and Immunology |
Suneet Agarwal | grad student | 2001 | Harvard |
Deborah C. Solymar | grad student | 2003 | Harvard |
Madhuri Borde | grad student | 2006 | Harvard |
Fernando Cruz-Guilloty | grad student | 2008 | Harvard |
Ivana Djuretic | grad student | 2009 | Harvard |
Mamta V. Tahiliani | grad student | 2009 | Harvard |
William A. Pastor | grad student | 2011 | Harvard |
Stefan Feske | post-doc | 2003- | NYU School of Medicine |
Yubin Zhou | post-doc | 2008-2010 | Texas A & M |
Yun Huang | post-doc | 2009-2014 | Texas A & M |
BETA: Related publications
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Publications
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Suzuki K, Rao A, Onodera A. (2025) The TET-TDG axis in T cells and biological processes. International Immunology |
Zaiken MC, Jin S, McDonald-Hyman C, et al. (2025) Deficiency of T follicular helper cell Tet3 DNA demethylation inhibits pathogenic IgG2c class switching and chronic GVHD. Blood |
Ehinger E, Rao A. (2024) Cellular reprogramming by protein degradation: The next frontier in cancer immunotherapy. Cell Chemical Biology. 31: 189-192 |
López-Moyado IF, Ko M, Hogan PG, et al. (2024) TET Enzymes in the Immune System: From DNA Demethylation to Immunotherapy, Inflammation, and Cancer. Annual Review of Immunology |
Georges RO, Sepulveda H, Angel JC, et al. (2022) Acute deletion of TET enzymes results in aneuploidy in mouse embryonic stem cells through decreased expression of Khdc3. Nature Communications. 13: 6230 |
Nguyen NT, Huang K, Zeng H, et al. (2021) Nano-optogenetic engineering of CAR T cells for precision immunotherapy with enhanced safety. Nature Nanotechnology |
Yue X, Samaniego-Castruita D, González-Avalos E, et al. (2021) Whole-genome analysis of TET dioxygenase function in regulatory T cells. Embo Reports. e52716 |
Seo H, González-Avalos E, Zhang W, et al. (2021) BATF and IRF4 cooperate to counter exhaustion in tumor-infiltrating CAR T cells. Nature Immunology |
Reilly BM, Luger T, Park S, et al. (2020) 5-Azacytidine Transiently Restores Dysregulated Erythroid Differentiation Gene Expression in TET2-Deficient Erythroleukemia Cells. Molecular Cancer Research : McR |
Yue X, Rao A. (2020) TET-family dioxygenases and the TET activator Vitamin C in immune responses and cancer. Blood |