Alexander Marson

Affiliations: 
Immunology and Microbiology University of California, San Francisco, San Francisco, CA 
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Parents

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Rudolf Jaenisch grad student (Neurotree)
Richard A. Young grad student 2005-2008 MIT

Children

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Joseph Hiatt grad student UCSF
Theodore L. Roth grad student UCSF School of Medicine (Neurotree)
Daniel Bryan Goodman post-doc 2017- UCSF
Sagar P. Bapat post-doc 2018- UCSF
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Publications

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Wheeler BD, Gagnon JD, Zhu WS, et al. (2023) The lncRNA inhibits miR-15/16 to enhance cytotoxic T cell activation and memory cell formation. Elife. 12
Schmidt R, Ward CC, Dajani R, et al. (2023) Base-editing mutagenesis maps alleles to tune human T cell functions. Nature
Andrabi SBA, Batkulwar K, Bhosale SD, et al. (2023) HIC1 interacts with FOXP3 multi protein complex: Novel pleiotropic mechanisms to regulate human regulatory T cell differentiation and function. Immunology Letters. 263: 123-132
Weinstock JS, Arce MM, Freimer JW, et al. (2023) Gene regulatory network inference from CRISPR perturbations in primary CD4+ T cells elucidates the genomic basis of immune disease. Biorxiv : the Preprint Server For Biology
Blaeschke F, Chen YY, Apathy R, et al. (2023) Modular pooled discovery of synthetic knockin sequences to program durable cell therapies. Cell. 186: 4216-4234.e33
Mamedov MR, Vedova S, Freimer JW, et al. (2023) CRISPR screens decode cancer cell pathways that trigger γδ T cell detection. Nature
Wheeler BD, Gagnon JD, Zhu WS, et al. (2023) The lncRNA Malat1 Inhibits miR-15/16 to Enhance Cytotoxic T Cell Activation and Memory Cell Formation. Biorxiv : the Preprint Server For Biology
Simeonov DR, Park K, Cortez JT, et al. (2023) Non-coding sequence variation reveals fragility within interleukin 2 feedback circuitry and shapes autoimmune disease risk. Biorxiv : the Preprint Server For Biology
Foss DV, Muldoon JJ, Nguyen DN, et al. (2023) Peptide-mediated delivery of CRISPR enzymes for the efficient editing of primary human lymphocytes. Nature Biomedical Engineering
Lo WL, Kuhlmann M, Rizzuto G, et al. (2023) A single-amino acid substitution in the adaptor LAT accelerates TCR proofreading kinetics and alters T-cell selection, maintenance and function. Nature Immunology
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