Sangeeta Chawla

Biology University of York, York, England, United Kingdom 
"Sangeeta Chawla"
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Fogg PC, O'Neill JS, Dobrzycki T, et al. (2014) Class IIa histone deacetylases are conserved regulators of circadian function. The Journal of Biological Chemistry. 289: 34341-8
Soriano FX, Chawla S, Skehel P, et al. (2013) SMRT-mediated co-shuttling enables export of class IIa HDACs independent of their CaM kinase phosphorylation sites. Journal of Neurochemistry. 124: 26-35
Zhang W, Tingare A, Ng DC, et al. (2012) IP3-dependent intracellular Ca2+ release is required for cAMP-induced c-fos expression in hippocampal neurons. Biochemical and Biophysical Research Communications. 425: 450-5
Lam BY, Zhang W, Ng DC, et al. (2010) CREB-dependent Nur77 induction following depolarization in PC12 cells and neurons is modulated by MEF2 transcription factors. Journal of Neurochemistry. 112: 1065-73
Lam BY, Zhang W, Enticknap N, et al. (2009) Inverse regulation of plasticity-related immediate early genes by calcineurin in hippocampal neurons. The Journal of Biological Chemistry. 284: 12562-71
Lim JC, Kania KD, Wijesuriya H, et al. (2008) Activation of beta-catenin signalling by GSK-3 inhibition increases p-glycoprotein expression in brain endothelial cells. Journal of Neurochemistry. 106: 1855-65
Lam BYH, Chawla S. (2008) Role of signal-responsive class IIa histone deacetylases in regulating neuronal activity-dependent gene expression Transcriptional Regulation by Neuronal Activity: to the Nucleus and Back. 175-186
Lam BY, Chawla S. (2007) MEF2D expression increases during neuronal differentiation of neural progenitor cells and correlates with neurite length. Neuroscience Letters. 427: 153-8
Belfield JL, Whittaker C, Cader MZ, et al. (2006) Differential effects of Ca2+ and cAMP on transcription mediated by MEF2D and cAMP-response element-binding protein in hippocampal neurons. The Journal of Biological Chemistry. 281: 27724-32
McKenzie GJ, Stevenson P, Ward G, et al. (2005) Nuclear Ca2+ and CaM kinase IV specify hormonal- and Notch-responsiveness. Journal of Neurochemistry. 93: 171-85
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