Anita Sidhu

Affiliations: 
Georgetown University Medical Center, Washington, DC, United States 
Area:
Neuroscience Biology
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"Anita Sidhu"
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Publications

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Mercado G, Castillo V, Soto P, et al. (2016) ER stress and Parkinson's disease: Pathological inputs that converge into the secretory pathway. Brain Research
Credle JJ, Forcelli PA, Delannoy M, et al. (2015) α-Synuclein-mediated inhibition of ATF6 processing into COPII vesicles disrupts UPR signaling in Parkinson's disease. Neurobiology of Disease. 76: 112-25
Credle JJ, George JL, Wills J, et al. (2015) GSK-3β dysregulation contributes to parkinson's-like pathophysiology with associated region-specific phosphorylation and accumulation of tau and α-synuclein. Cell Death and Differentiation. 22: 838-51
Oaks AW, Sidhu A. (2013) Parallel mechanisms for direct and indirect membrane protein trafficking by synucleins. Communicative & Integrative Biology. 6: e26794
Oaks AW, Marsh-Armstrong N, Jones JM, et al. (2013) Synucleins antagonize endoplasmic reticulum function to modulate dopamine transporter trafficking. Plos One. 8: e70872
Oaks AW, Frankfurt M, Finkelstein DI, et al. (2013) Age-dependent effects of A53T alpha-synuclein on behavior and dopaminergic function. Plos One. 8: e60378
Wills J, Credle J, Oaks AW, et al. (2012) Paraquat, but not maneb, induces synucleinopathy and tauopathy in striata of mice through inhibition of proteasomal and autophagic pathways. Plos One. 7: e30745
Zhou XM, Sidhu A, Fishman PH. (2012) Desensitization of the human D(1) dopamine receptor: Evidence for Involvement of both cyclic AMP-dependent and receptor-specific protein kinases. Molecular and Cellular Neurosciences. 2: 464-72
Kaul T, Credle J, Haggerty T, et al. (2011) Region-specific tauopathy and synucleinopathy in brain of the alpha-synuclein overexpressing mouse model of Parkinson's disease. Bmc Neuroscience. 12: 79
Haggerty T, Credle J, Rodriguez O, et al. (2011) Hyperphosphorylated Tau in an α-synuclein-overexpressing transgenic model of Parkinson's disease. The European Journal of Neuroscience. 33: 1598-610
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