This core facility will provide equipment, reagents, and technical support required for the successful completion of the molecular biology components of the individual projeCts. The rationale of the core is that all of the projects require either molecular cloning or expression studies using cloned cDNAs. The molecular biology core is a single laboratory space, to be shared by all of the groups, which will alleviate duplication costs for equipment, supplies, and salaries. By nature of its central location in the Life Sciences Building, the core facility will enhance scientific interactions among project members. The core is also designed to eliminate potential technical barriers which may exist between labs of different disciplines. The molecular biology core will provide the following specific services critical for each proposed project: a) Propagation and maintenance of plasmid vectors: plasmids will be purified in the core using either CsCl gradient ultra centrifugation or commercial kits which utilize chromatography. The core will be responsible for transformation of the DNAs into bacteria, for maintaining frozen stocks of the recombinant bacteria, and for mailing DNAs to other colleagues in the field, upon request. b) Sequencing: Sequencing reactions will be performed by the research assistant using oligonucleotide primers made with the core Millipore synthesizer. A new automated sequencer in the Life Science building will be used as soon as it is up-and-running. A computer work station in core, containing DNA software, is available for storage and analysis of data. c) Preparation of commonly used solutions (electrophoresis buffers, bacterial media) and preparation of bacterial plates containing different antibiotics. d) Preparation of synthetic RNAs for expression studies. e) Purification of GST-fusion proteins. f) Maintenance of all equipment, including periodic cleaning of centrifuges, rotors, gel drier, lyophilizers.

Project Start
1997-08-01
Project End
1998-07-31
Budget Start
1996-10-01
Budget End
1997-09-30
Support Year
2
Fiscal Year
1997
Total Cost
Indirect Cost
Name
State University New York Stony Brook
Department
Type
DUNS #
804878247
City
Stony Brook
State
NY
Country
United States
Zip Code
11794
Gould 3rd, Harry J; England, John D; Soignier, R Denis et al. (2004) Ibuprofen blocks changes in Na v 1.7 and 1.8 sodium channels associated with complete Freund's adjuvant-induced inflammation in rat. J Pain 5:270-80
Djouhri, Laiche; Newton, Richard; Levinson, Simon Rock et al. (2003) Sensory and electrophysiological properties of guinea-pig sensory neurones expressing Nav 1.7 (PN1) Na+ channel alpha subunit protein. J Physiol 546:565-76
Boiko, Tatiana; Van Wart, Audra; Caldwell, John H et al. (2003) Functional specialization of the axon initial segment by isoform-specific sodium channel targeting. J Neurosci 23:2306-13
Rios, Jose C; Rubin, Marina; St Martin, Mary et al. (2003) Paranodal interactions regulate expression of sodium channel subtypes and provide a diffusion barrier for the node of Ranvier. J Neurosci 23:7001-11
Antonucci, D E; Lim, S T; Vassanelli, S et al. (2001) Dynamic localization and clustering of dendritic Kv2.1 voltage-dependent potassium channels in developing hippocampal neurons. Neuroscience 108:69-81
Boiko, T; Rasband, M N; Levinson, S R et al. (2001) Compact myelin dictates the differential targeting of two sodium channel isoforms in the same axon. Neuron 30:91-104
Choi, D Y; Toledo-Aral, J J; Lin, H Y et al. (2001) Fibroblast growth factor receptor 3 induces gene expression primarily through Ras-independent signal transduction pathways. J Biol Chem 276:5116-22
Caldwell, J H; Schaller, K L; Lasher, R S et al. (2000) Sodium channel Na(v)1.6 is localized at nodes of ranvier, dendrites, and synapses. Proc Natl Acad Sci U S A 97:5616-20
Krzemien, D M; Schaller, K L; Levinson, S R et al. (2000) Immunolocalization of sodium channel isoform NaCh6 in the nervous system. J Comp Neurol 420:70-83
Lim, S T; Antonucci, D E; Scannevin, R H et al. (2000) A novel targeting signal for proximal clustering of the Kv2.1 K+ channel in hippocampal neurons. Neuron 25:385-97

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