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1. Single nuclei transcriptomics in human and non-human primate striatum in opioid use disorder

2. Regulation of Inhibitory Signaling at the Receptor and Cellular Level; Advances in Our Understanding of GABAergic Neurotransmission and the Mechanisms by Which It Is Disrupted in Epilepsy

3. Evidence for a non-canonical JAK/STAT signaling pathway in the synthesis of the brain’s major ion channels and neurotransmitter receptors

4. Nuclear Respiratory Factor 1 (NRF-1) Controls the Activity Dependent Transcription of the GABA-A Receptor Beta 1 Subunit Gene in Neurons

5. Single nuclei transcriptomics of human and monkey striatum implicates DNA damage, neuroinflammation, and neurodegeneration signaling in opioid use disorder

6. Selective neuronal knockout of STAT3 function inhibits epilepsy progression, improves cognition, and restores dysregulated gene networks in a temporal lobe epilepsy model

7. A tool for the in vivo gating of gene expression in neurons using the co-occurrence of neural activity and light

8. Transcriptomic analysis of the BDNF-induced JAK/STAT pathway in neurons: a window into epilepsy-associated gene expression

9. Brief Dark Exposure Reduces Tonic Inhibition in Visual Cortex

10. Changes in neuronal immunofluorescence in the C- versus N-terminal domains of hnRNP H following D1 dopamine receptor activation

11. Effect of spontaneous seizures on GABAAreceptor α4 subunit expression in an animal model of temporal lobe epilepsy

12. Acute administration of the small-molecule p75NTRligand does not prevent hippocampal neuron loss or development of spontaneous seizures after pilocarpine-induced status epilepticus

13. The Neuroactive Steroid Pregnenolone Sulfate Stimulates Trafficking of FunctionalN-Methyl D-Aspartate Receptors to the Cell Surface via a Noncanonical, G Protein, and Ca2+-Dependent Mechanism

14. Molecular pathways controlling inhibitory receptor expression

15. Brain-derived neurotrophic factor uses CREB and Egr3 to regulate NMDA receptor levels in cortical neurons

16. Genetic disruption of the autism spectrum disorder risk gene PLAUR induces GABAA receptor subunit changes

17. Alteration of epileptogenesis genes

18. A Minimal Promoter for the GABAA Receptor α6-Subunit Gene Controls Tissue Specificity

19. Dynamic Changes in Vesicular Glutamate Transporter 1 Function and Expression Related to Methamphetamine-Induced Glutamate Release

20. JAK/STAT pathway regulation of GABAA receptor expression after differing severities of experimental TBI

21. Rapid Increases in proBDNF after Pilocarpine-Induced Status Epilepticus in Mice Are Associated with Reduced proBDNF Cleavage Machinery

22. The Anxioselective Agent 7-(2-Chloropyridin-4-yl)pyrazolo-[1,5-a]-pyrimidin-3-yl](pyridin-2-yl)methanone (DOV 51892) Is More Efficacious Than Diazepam at Enhancing GABA-Gated Currents at α1 Subunit-Containing GABAA Receptors

23. Sulfated steroids as endogenous neuromodulators

24. GABA Induces Activity Dependent Delayed-onset Uncoupling of GABA/Benzodiazepine Site Interactions in Neocortical Neurons

25. Selective anxiolysis produced by ocinaplon, a GABA A receptor modulator

26. GABAA receptors: building the bridge between subunit mRNAs, their promoters, and cognate transcription factors

27. Up-regulation of NMDAR1 subunit gene expression in cortical neurons via a PKA-dependent pathway

28. Effects of prenatal malnutrition on GABAA receptor α1, α3 and β2 mRNA levels

29. A Role for Picomolar Concentrations of Pregnenolone Sulfate in Synaptic Activity-Dependent Ca2+ Signaling and CREB Activation

30. The effect of STAT3 inhibition on status epilepticus and subsequent spontaneous seizures in the pilocarpine model of acquired epilepsy

31. Human GABABR genomic structure: evidence for splice variants in GABABR1 but not GABABR2

32. An initiator element mediates autologous downregulation of the human type A γ-aminobutyric acid receptor β1 subunit gene

33. Molecular Identification of the Human GABABR2: Cell Surface Expression and Coupling to Adenylyl Cyclase in the Absence of GABABR1

34. Polycomblike protein PHF1b: a transcriptional sensor for GABA receptor activity

35. GABAA Receptor Regulation after Experimental Traumatic Brain Injury

36. Mapping of the α4 subunit gene (GABRA4) to human chromosome 4 defines an α2—α4—β1—γ1 gene cluster: further evidence that modern GABAA receptor gene clusters are derived from an ancestral cluster

38. Mapping of the β2 Subunit Gene (GABRB2) to Microdissected Human Chromosome 5q34-q35 Defines a Gene Cluster for the Most Abundant GABAA Receptor Isoform

39. P

40. Viral Vector Gene Therapy for Epilepsy

41. Promoter

42. BDNF Selectively Regulates GABA A Receptor Transcription by Activation of the JAK/STAT Pathway

43. Surface Expression of GABAA Receptors Is Transcriptionally Controlled by the Interplay of cAMP-response Element-binding Protein and Its Binding Partner Inducible cAMP Early Repressor*

44. BDNF and the diseased nervous system: a delicate balance between adaptive and pathological processes of gene regulation

45. The Harvard Mastery of Stress Study 35-year follow-up: prognostic significance of patterns of psychophysiological arousal and adaptation

46. Mechanisms of GABAA and GABAB Receptor Gene Regulation and Cell Surface Expression

47. Enhancing GABA(A) Receptor α1 Subunit Levels in Hippocampal Dentate Gyrus Inhibits Epilepsy Development in an Animal Model of Temporal Lobe Epilepsy

48. γ‐Aminobutyric Acid (GABA) Receptors

49. Brain-derived neurotrophic factor (BDNF)-induced synthesis of early growth response factor 3 (Egr3) controls the levels of type A GABA receptor alpha 4 subunits in hippocampal neurons

50. cAMP Response Element-Binding Protein, Activating Transcription Factor-4, and Upstream Stimulatory Factor Differentially Control Hippocampal GABA(B)R1a and GABA(B)R1b Subunit Gene Expression through Alternative Promoters

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