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S D Kraner

Showing results (1-10 of 13) with videos related to

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The Journal of Biological Chemistry|May 25, 1985
Purification and functional reconstitution of the voltage-sensitive sodium channel from rabbit T-tubular membranesS D Kraner, J C Tanaka, R L Barchi
Neurobiology of Disease|December 22, 1999
Altered gene expression in steroid-treated denervated muscleM M Rich, S D Kraner, R L Barchi
Neuron|July 1, 1992
Silencing the type II sodium channel gene: a model for neural-specific gene regulationS D Kraner, J A Chong, H J Tsay, et al.
Neuron|February 1, 1990
Neuron-specific expression of the rat brain type II sodium channel gene is directed by upstream regulatory elementsR A Maue, S D Kraner, R H Goodman, et al.
The Journal of General Physiology|June 17, 1998
Inactivation and secondary structure in the D4/S4-5 region of the SkM1 sodium channelG N Filatov, T P Nguyen, S D Kraner, et al.
The Journal of Biological Chemistry|June 6, 1998
Two E-boxes are the focal point of muscle-specific skeletal muscle type 1 Na+ channel gene expressionS D Kraner, M M Rich, R G Kallen, et al.
Annals of Neurology|March 4, 1998
Loss of electrical excitability in an animal model of acute quadriplegic myopathyM M Rich, M J Pinter, S D Kraner, et al.
Journal of Neurochemistry|April 2, 1998
Analysis of local structure in the D2/S1-S2 region of the rat skeletal muscle type 1 sodium channel using insertional mutagenesisS D Kraner, G N Filatov, W Sun, et al.
Cancer Gene Therapy|November 8, 2008
PDGF-A promoter and enhancer elements provide efficient and selective antineoplastic gene therapy in multiple cancer typesA Mishra, A K Ormerod, M L Cibull, et al.
The Journal of Biological Chemistry|March 13, 1999
Interaction between the skeletal muscle type 1 Na+ channel promoter E-box and an upstream repressor element. Release of repression by myogeninS D Kraner, M M Rich, M A Sholl, et al.
Pageof 2

Showing results (1-10 of 13) with videos related to

Sort By:
Pageof 2
The Journal of Biological Chemistry|May 25, 1985
Purification and functional reconstitution of the voltage-sensitive sodium channel from rabbit T-tubular membranesS D Kraner, J C Tanaka, R L Barchi
Neurobiology of Disease|December 22, 1999
Altered gene expression in steroid-treated denervated muscleM M Rich, S D Kraner, R L Barchi
Neuron|July 1, 1992
Silencing the type II sodium channel gene: a model for neural-specific gene regulationS D Kraner, J A Chong, H J Tsay, et al.
Neuron|February 1, 1990
Neuron-specific expression of the rat brain type II sodium channel gene is directed by upstream regulatory elementsR A Maue, S D Kraner, R H Goodman, et al.
The Journal of General Physiology|June 17, 1998
Inactivation and secondary structure in the D4/S4-5 region of the SkM1 sodium channelG N Filatov, T P Nguyen, S D Kraner, et al.
The Journal of Biological Chemistry|June 6, 1998
Two E-boxes are the focal point of muscle-specific skeletal muscle type 1 Na+ channel gene expressionS D Kraner, M M Rich, R G Kallen, et al.
Annals of Neurology|March 4, 1998
Loss of electrical excitability in an animal model of acute quadriplegic myopathyM M Rich, M J Pinter, S D Kraner, et al.
Journal of Neurochemistry|April 2, 1998
Analysis of local structure in the D2/S1-S2 region of the rat skeletal muscle type 1 sodium channel using insertional mutagenesisS D Kraner, G N Filatov, W Sun, et al.
Cancer Gene Therapy|November 8, 2008
PDGF-A promoter and enhancer elements provide efficient and selective antineoplastic gene therapy in multiple cancer typesA Mishra, A K Ormerod, M L Cibull, et al.
The Journal of Biological Chemistry|March 13, 1999
Interaction between the skeletal muscle type 1 Na+ channel promoter E-box and an upstream repressor element. Release of repression by myogeninS D Kraner, M M Rich, M A Sholl, et al.
Pageof 2