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Summary Anatomy Item Literature (1949) Expression Attributions Wiki
XB-ANAT-3904

Papers associated with plasma membrane (and gabarap)

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MmTX1 and MmTX2 from coral snake venom potently modulate GABAA receptor activity., Rosso JP., Proc Natl Acad Sci U S A. February 24, 2015; 112 (8): E891-900.


Phosphatidylinositol 4,5-bisphosphate depletion fails to affect neurosteroid modulation of GABAA receptor function., Mennerick S., Psychopharmacology (Berl). September 1, 2014; 231 (17): 3493-501.


The influence of neuroactive steroid lipophilicity on GABAA receptor modulation: evidence for a low-affinity interaction., Chisari M., J Neurophysiol. August 1, 2009; 102 (2): 1254-64.


Effects on membrane capacitance of steroids with antagonist properties at GABAA receptors., Mennerick S., Biophys J. July 1, 2008; 95 (1): 176-85.


Slow actions of neuroactive steroids at GABAA receptors., Shu HJ., J Neurosci. July 28, 2004; 24 (30): 6667-75.


Activation of protein kinase C induces gamma-aminobutyric acid type A receptor internalization in Xenopus oocytes., Chapell R., J Biol Chem. December 4, 1998; 273 (49): 32595-601.


A GABAA receptor alpha1 subunit tagged with green fluorescent protein requires a beta subunit for functional surface expression., Connor JX., J Biol Chem. October 30, 1998; 273 (44): 28906-11.


The polarized distribution of poly(A+)-mRNA-induced functional ion channels in the Xenopus oocyte plasma membrane is prevented by anticytoskeletal drugs., Peter AB., J Cell Biol. August 1, 1991; 114 (3): 455-64.


A system for the translation of receptor messenger-RNA and the study of the assembly of functional receptors., Barnard EA., J Recept Res. January 1, 1984; 4 (1-6): 681-704.

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