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Molecular and Cellular Biochemistry, ISSN 0300-8177, 4/2007, Volume 298, Issue 1, pp. 93 - 100
Journal Article
Journal Article
BIOCHEMICAL JOURNAL, ISSN 0264-6021, 10/2004, Volume 383, Issue Pt 1, pp. 111 - 119
Journal Article
Journal Article
Journal of Virological Methods, ISSN 0166-0934, 2004, Volume 120, Issue 1, pp. 9 - 12
A new system was developed for producing conditional-lethal vaccinia virus mutants using the tetracycline controlled gene expression system from bacteria. The... 
Vaccinia virus | Conditional mutant | Tetracycline controlled gene expression | MARKER | tetracycline controlled gene expression | BIOCHEMICAL RESEARCH METHODS | TET-REPRESSOR | vaccinia virus | IDENTIFICATION | conditional mutant | MUTANTS | VIROLOGY | OPERATOR | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | CONSTRUCTION | RESISTANCE | SELECTION
Journal Article
European Journal of Neuroscience, ISSN 0953-816X, 07/2007, Volume 26, Issue 1, pp. 155 - 170
In the rat brain, neuropeptide Y (NPY) Y1 and Y5 receptors are coexpressed in various forebrain regions where they mediate several NPY‐activated functions,... 
tetracycline controlled transactivator | Venus fluorescent protein | Y1 receptor for Neuropeptide Y | transgenic mice | Y5 receptor for Neuropeptide Y | Tetracycline controlled transactivator | receptor for Neuropeptide Y | Transgenic mice
Journal Article
EUROPEAN JOURNAL OF NEUROSCIENCE, ISSN 0953-816X, 07/2007, Volume 26, Issue 1, pp. 155 - 170
In the rat brain, neuropeptide Y (NPY) Y-1 and Y-5 receptors are coexpressed in various forebrain regions where they mediate several NPY-activated functions,... 
tetracycline controlled transactivator | Y-1 receptor for neuropeptide Y | RAT | FOOD-INTAKE | Y-5 receptor for neuropeptide Y | SUPPRESSION | NEUROSCIENCES | NEUROPEPTIDE-Y | INHIBITION | transgenic mice | MESSENGER-RNA | GENE | Venus fluorescent protein | EPILEPSY | APPETITE | BRAIN
Journal Article
Biochemical Journal, ISSN 0264-6021, 08/2005, Volume 389, Issue 3, pp. 593 - 610
Molecular techniques allowing in vivo modulation of gene expression have provided unique opportunities and challenges for behavioural studies aimed at... 
Histamine | Apolipoprotein E | Behavioural phenotyping | Mouse model | Histamine receptor | Transgenic gene | Behavioural testing | histamine | histamine receptor | mouse model | behavioural phenotyping | ALZHEIMERS-DISEASE | BRAIN HISTAMINE | BIOCHEMISTRY & MOLECULAR BIOLOGY | behavioural testing | PASSIVE-AVOIDANCE RESPONSE | ELEVATED PLUS-MAZE | TARGETED DISRUPTION | transgenic gene | apolipoprotein E | GENE-EXPRESSION | HISTAMINE H-3 RECEPTOR | ETHANOL-CONSUMPTION | HUNTINGTONS-DISEASE | OPEN-FIELD BEHAVIOR | Central Nervous System - physiology | Receptors, Histamine - physiology | Mice - genetics | Animals | Histamine - physiology | Behavior, Animal - drug effects | Behavior, Animal - physiology | Mice - psychology | Receptors, Histamine - genetics | RP, retinitis pigmentosa | ADHD, attention deficit hyperactivity disorder | H1R, histamine 1 receptor | Review | VIP, vasoactive intestinal peptide | ACTH, adrenocorticotropin | GPCR, G-protein-coupled receptor | (r)tTA, (reverse) tetracycline-controlled transactivator system | 5-HT, 5-hydroxytryptamine | CRF, corticotropin-releasing factor | HPA axis, hypothalamic–pituitary–adrenal axis | GABA, γ-aminobutyric acid | ENU, N-ethyl-N-nitrosourea | AVP, arginine vasopressin | QTL, quantitative trait locus | CEA, central amygdaloid nucleus | CNS, central nervous system | AD, Alzheimer's disease | OCD, obsessive–compulsive disorder | BLA, basolateral amygdaloid nucleus
Journal Article