Suchergebnisse - Ruth D. Murrell‐Lagnado
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The trafficking and targeting of P2X receptors von Lucy E. Robinson, Ruth D. Murrell‐Lagnado
Veröffentlicht 2013Revisão -
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Energetics of Shaker K channels block by inactivation peptides. von Ruth D. Murrell‐Lagnado, Richard W. Aldrich
Veröffentlicht 1993Artigo -
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Molecular Determinants for Sodium-dependent Activation of G Protein-gated K+ Channels von Ivan H. M. Ho, Ruth D. Murrell‐Lagnado
Veröffentlicht 1999Artigo -
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P2X Receptor Trafficking in Neurons Is Subunit Specific von Laura K. Bobanović, Stephen Royle, Ruth D. Murrell‐Lagnado
Veröffentlicht 2002Artigo -
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A Functional P2X7 Splice Variant with an Alternative Transmembrane Domain 1 Escapes Gene Inactivation in P2X7 Knock-out Mice von Annette Nicke, Yung‐Hui Kuan, Marianela Masin, Jürgen Rettinger, Benjamin Marquez-Klaka, Olaf Bender, Dariusz C. Górecki, Ruth D. Murrell‐Lagnado, Florentina Soto
Veröffentlicht 2009Artigo -
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Expression, assembly and function of novel C‐terminal truncated variants of the mouse P2X7 receptor: re‐evaluation of P2X7 knockouts von Marianela Masin, Chris Young, Koini Lim, Sara J Barnes, Xing Jian Xu, Viola Marschall, Wojciech Brutkowski, Elizabeth R Mooney, Dariusz C. Górecki, Ruth D. Murrell‐Lagnado
Veröffentlicht 2011Artigo -
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P2x4 receptor promotes mammary cancer progression by sustaining autophagy and associated mesenchymal transition von Stéphanie Chadet, Jordan Allard, Lucie Brisson, Osbaldo Lopez‐Charcas, Roxane Lemoine, Audrey Héraud, Stéphanie Lerondel, Roseline Guibon, Gaëlle Fromont, Alain Le Pape, Denis Angoulvant, Lin‐Hua Jiang, Ruth D. Murrell‐Lagnado, Sébastien Roger
Veröffentlicht 2022Artigo
Suchwerkzeuge:
Ähnliche Schlagworte
Biology
Biochemistry
Receptor
Cell biology
Chemistry
Biophysics
Gene
Molecular biology
Enzyme
Intracellular
Protein subunit
Agonist
Endocytic cycle
Endocytosis
Gating
Genetics
Organic chemistry
Physics
Potassium channel
Adenosine triphosphate
Alternative splicing
Cell
Cell membrane
Cell surface receptor
Cytoplasm
Endoplasmic reticulum
Endosome
Exon
Gene knockout
HEK 293 cells