Daniel Chase

Affiliations: 
Biochemistry Central Connecticut State University, New Britain, CT, United States 
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Ghosh DD, Sanders T, Hong S, et al. (2016) Neural Architecture of Hunger-Dependent Multisensory Decision Making in C. elegans. Neuron
Maher KN, Swaminathan A, Patel P, et al. (2013) A novel strategy for cell-autonomous gene knockdown in Caenorhabditis elegans defines a cell-specific function for the G-protein subunit GOA-1. Genetics. 194: 363-73
Chase DL, Koelle MR. (2007) Biogenic amine neurotransmitters in C. elegans. Wormbook : the Online Review of C. Elegans Biology. 1-15
Jose AM, Bany IA, Chase DL, et al. (2007) A specific subset of transient receptor potential vanilloid-type channel subunits in Caenorhabditis elegans endocrine cells function as mixed heteromers to promote neurotransmitter release. Genetics. 175: 93-105
Chase DL, Pepper JS, Koelle MR. (2004) Mechanism of extrasynaptic dopamine signaling in Caenorhabditis elegans. Nature Neuroscience. 7: 1096-103
Chase DL, Koelle MR. (2004) Genetic analysis of RGS protein function in Caenorhabditis elegans. Methods in Enzymology. 389: 305-20
Chase DL, Patikoglou GA, Koelle MR. (2001) Two RGS proteins that inhibit Galpha(o) and Galpha(q) signaling in C. elegans neurons require a Gbeta(5)-like subunit for function. Current Biology : Cb. 11: 222-31
Dong MQ, Chase D, Patikoglou GA, et al. (2000) Multiple RGS proteins alter neural G protein signaling to allow C. elegans to rapidly change behavior when fed. Genes & Development. 14: 2003-14
Chase D, Serafinas C, Ashcroft N, et al. (2000) The polo-like kinase PLK-1 is required for nuclear envelope breakdown and the completion of meiosis in Caenorhabditis elegans. Genesis. 26: 26-41
Chase D, Feng Y, Hanshew B, et al. (1998) Expression and phosphorylation of fibroblast-growth-factor-inducible kinase (Fnk) during cell-cycle progression. The Biochemical Journal. 655-60
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