Molecular Neurobiology: Proceedings of the First NIMH ConferenceU.S. Department of Health and Human Services, Public Health Service, Alcohol, Drug Abuse, and Mental Health Administration, National Institute of Mental Health, 1989 - Всего страниц: 348 |
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Стр. xxxvi
... -105 Rockville , MD 20857 Michael J. Zigmond , Ph.D. Department of Behavioral Neuroscience University of Pittsburgh 570 Crawford Hall Pittsburgh , PA 15260 Figure 1 ALPHA1 ALPHA2 ALPHA3 ALPHA 4 ALPHA1 ALPHA2 ALPHA3 xxxvi.
... -105 Rockville , MD 20857 Michael J. Zigmond , Ph.D. Department of Behavioral Neuroscience University of Pittsburgh 570 Crawford Hall Pittsburgh , PA 15260 Figure 1 ALPHA1 ALPHA2 ALPHA3 ALPHA 4 ALPHA1 ALPHA2 ALPHA3 xxxvi.
Стр. 15
... ( figure 1 ) ; in this terminology , alpha 1 is expressed in skeletal muscle . Another neuronal subunit , beta 2 , has also been identified ( figure 2 ) . We have named this subunit beta 2 because it can functionally substitute for the ...
... ( figure 1 ) ; in this terminology , alpha 1 is expressed in skeletal muscle . Another neuronal subunit , beta 2 , has also been identified ( figure 2 ) . We have named this subunit beta 2 because it can functionally substitute for the ...
Стр. 16
... Figure 1 ALPHA1 ALPHA2 ALPHA3 ALPHA 4 ALPHA1 ALPHA2 ALPHA3 ALPHA 4 ALPHA1 ALPHA2 ALPHA3 ALPHA 4 ALPHA1 ALPHA2 ALPHA3 ALPHA 4 MELSTVLLLLGLSSAGLVLGSEHETRLVAKLFEDYSSVVRPVE DHRE IVOVTVGLQLIQLINVDEVNQIVTTNVI KOOWV NEKWNPDDYGGV ...
... Figure 1 ALPHA1 ALPHA2 ALPHA3 ALPHA 4 ALPHA1 ALPHA2 ALPHA3 ALPHA 4 ALPHA1 ALPHA2 ALPHA3 ALPHA 4 ALPHA1 ALPHA2 ALPHA3 ALPHA 4 MELSTVLLLLGLSSAGLVLGSEHETRLVAKLFEDYSSVVRPVE DHRE IVOVTVGLQLIQLINVDEVNQIVTTNVI KOOWV NEKWNPDDYGGV ...
Стр. 17
... ( figure 4 ) . The beta 2 transcript is widely distributed throughout the brain , consistent with the hypothesis that it is a common subunit used to form three different receptor subtypes ( figure 5 ) . In general , the distribution of ...
... ( figure 4 ) . The beta 2 transcript is widely distributed throughout the brain , consistent with the hypothesis that it is a common subunit used to form three different receptor subtypes ( figure 5 ) . In general , the distribution of ...
Стр. 18
... Figure 2 RAT BETA 2 RAT ALPHA 4 RAT ALPHA 3 RAT BETA 2 RAT ALPHA 4 RAT ALPHA 3 RAT BETA 2 RAT ALPHA 4 RAT ALPHA 3 ... Figure 5 A ) ANTISENSE B ) SENSE 18 CHANNELS AND RECEPTORS.
... Figure 2 RAT BETA 2 RAT ALPHA 4 RAT ALPHA 3 RAT BETA 2 RAT ALPHA 4 RAT ALPHA 3 RAT BETA 2 RAT ALPHA 4 RAT ALPHA 3 ... Figure 5 A ) ANTISENSE B ) SENSE 18 CHANNELS AND RECEPTORS.
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Academy of Sciences activity adhesion molecules alpha amino acid antibodies Aplysia arachidonic acid astrocytes axons basal basal lamina behavior binding brain cDNA cDNA clones cell adhesion Cell Biology cellular chick cholinergic components culture Developmental Drosophila embryonic encoding expression fasciclin function G protein ganglion gene genetic glycoproteins growth cones hormone hybridization identified iK.ACh integrin interactions intracellular Journal of Cell Journal of Neuroscience ligand mammalian mechanisms mediated membrane metabolites molecular motor neurons mRNA muscle mutations National Academy nerve growth factor nervous system neural neurite neurite outgrowth Neurobiology neuropeptide Neuroscience neurotransmitter nicotinic acetylcholine receptor nicotinic receptor NMDA pathway peptide Ph.D phosphorylation Physiology Piomelli postsynaptic potassium channel potentiation precursor presynaptic processes protein kinase region regulation Reichardt release response role School of Medicine Schwann cells sensory neurons sequence Shaker signal specific spinal cord structure studies substrate subunits synaptic vesicles synthesis tion tissue transcription University vitro
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