Publications

Found 173 results
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Cho S-H, Sun B, Zhou Y, Kauppinen TM, Halabisky B, Wes P, Ransohoff RM, Gan L.  2011.  CX3CR1 protein signaling modulates microglial activation and protects against plaque-independent cognitive deficits in a mouse model of Alzheimer disease.. J Biol Chem. 286(37):32713-22.
Edayathumangalam R, Wu R, Garcia R, Wang Y, Wang W, Kreinbring CA, Bach A, Liao J, Stone TA, Terwilliger TC et al..  2013.  Crystal structure of Bacillus subtilis GabR, an autorepressor and transcriptional activator of gabT.. Proc Natl Acad Sci U S A. 110(44):17820-5.
Min S-W, Chen X, Tracy TE, Li Y, Zhou Y, Wang C, Shirakawa K, S Minami S, Defensor E, Mok SAnn et al..  2015.  Critical role of acetylation in tau-mediated neurodegeneration and cognitive deficits.. Nat Med. 21(10):1154-62.
Dräger NM, Sattler SM, Huang CTzu-Ling, Teter OM, Leng K, Hashemi SHadi, Hong J, Aviles G, Clelland CD, Zhan L et al..  2022.  A CRISPRi/a platform in human iPSC-derived microglia uncovers regulators of disease states.. Nat Neurosci.
Dräger NM, Sattler SM, Huang CTzu-Ling, Teter OM, Leng K, Hashemi SHadi, Hong J, Aviles G, Clelland CD, Zhan L et al..  2022.  A CRISPRi/a platform in human iPSC-derived microglia uncovers regulators of disease states.. Nat Neurosci.
Samelson AJ, Ariqat N, McKetney J, Rohanitazangi G, Bravo CParra, Goodness D, Tian R, Grosjean P, Abskharon R, Eisenberg D et al..  2023.  CRISPR screens in iPSC-derived neurons reveal principles of tau proteostasis.. bioRxiv.
Samelson AJ, Ariqat N, McKetney J, Rohanitazangi G, Bravo CParra, Goodness D, Tian R, Grosjean P, Abskharon R, Eisenberg D et al..  2023.  CRISPR screens in iPSC-derived neurons reveal principles of tau proteostasis.. bioRxiv.
Kember RL, Georgi B, Bailey-Wilson JE, Stambolian D, Paul SM, Bućan M.  2015.  Copy number variants encompassing Mendelian disease genes in a large multigenerational family segregating bipolar disorder.. BMC Genet. 16:27.
Wang LY, Gan L, Forsythe ID, Kaczmarek LK.  1998.  Contribution of the Kv3.1 potassium channel to high-frequency firing in mouse auditory neurones.. J Physiol. 509 ( Pt 1):183-94.
Karch CM, Kao AW, Karydas A, Onanuga K, Martinez R, Argouarch A, Wang C, Huang C, Sohn PDongmin, Bowles KR et al..  2019.  A Comprehensive Resource for Induced Pluripotent Stem Cells from Patients with Primary Tauopathies.. Stem Cell Reports.
Karch CM, Kao AW, Karydas A, Onanuga K, Martinez R, Argouarch A, Wang C, Huang C, Sohn PDongmin, Bowles KR et al..  2019.  A Comprehensive Resource for Induced Pluripotent Stem Cells from Patients with Primary Tauopathies.. Stem Cell Reports.
Karch CM, Kao AW, Karydas A, Onanuga K, Martinez R, Argouarch A, Wang C, Huang C, Sohn PDongmin, Bowles KR et al..  2019.  A Comprehensive Resource for Induced Pluripotent Stem Cells from Patients with Primary Tauopathies.. Stem Cell Reports.
Karch CM, Kao AW, Karydas A, Onanuga K, Martinez R, Argouarch A, Wang C, Huang C, Sohn PDongmin, Bowles KR et al..  2019.  A Comprehensive Resource for Induced Pluripotent Stem Cells from Patients with Primary Tauopathies.. Stem Cell Reports.
Pranski EL, Van Sanford CD, Dalal NV, Orr AL, Karmali D, Cooper DS, Costa N, Heilman CJ, Gearing M, Lah JJ et al..  2012.  Comparative distribution of protein components of the A20 ubiquitin-editing complex in normal human brain.. Neurosci Lett. 520(1):104-9.
Davies CW, Chaney J, Korbel G, Ringe D, Petsko GA, Ploegh H, Das C.  2012.  The co-crystal structure of ubiquitin carboxy-terminal hydrolase L1 (UCHL1) with a tripeptide fluoromethyl ketone (Z-VAE(OMe)-FMK).. Bioorg Med Chem Lett. 22(12):3900-4.
Gan L, Perney TM, Kaczmarek LK.  1996.  Cloning and characterization of the promoter for a potassium channel expressed in high frequency firing neurons.. J Biol Chem. 271(10):5859-65.
Bateup HS, Svenningsson P, Kuroiwa M, Gong S, Nishi A, Heintz N, Greengard P.  2008.  Cell type-specific regulation of DARPP-32 phosphorylation by psychostimulant and antipsychotic drugs.. Nat Neurosci. 11(8):932-9.
Gan L, Hahn SJ, Kaczmarek LK.  1999.  Cell type-specific expression of the Kv3.1 gene is mediated by a negative element in the 5' untranslated region of the Kv3.1 promoter.. J Neurochem. 73(4):1350-62.