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LRRC8A
Sc-517113
LRRC8A Regulates Hypotonicity-Induced NLRP3 Inflammasome Activation
The LRRC8A:C Heteromeric Channel Is a Cgamp Transporter and the Dominant
Selective Transport of Neurotransmitters and Modulators by Distinct Volume-Regulated LRRC8 Anion Channels Darius Lutter1,2,3, Florian Ullrich1,2, Jennifer C
Vracs Swallow Platinum Drugs
The LRRC8A:C Heteromeric Channel Is a Cgamp Transporter and the Dominant Cgamp Importer in Human Vasculature Cells
Analysis of the Indacaterol-Regulated Transcriptome in Human Airway
Regulated Anion Channel Is Altered in Glaucoma
Comparative Transcriptome Profiling of Selected Osmotic Regulatory Proteins in the Gill During Seawater Acclimation of Chum Salm
Cryo-EM Structure of the Volume-Regulated Anion Channel
Leucine-Rich Repeat Containing 8A Contributes to the Expansion Of
LRRC8A Is Essential for Hypotonicity-, but Not for DAMP-Induced NLRP3
LRRC8 Family Proteins Within Lysosomes Regulate Cellular Osmoregulation and Enhance Cell Survival to Multiple Physiological Stresses
The SWELL1-LRRC8 Complex Regulates Endothelial AKT-Enos
Peripheral Nerve Single-Cell Analysis Identifies Mesenchymal Ligands That Promote Axonal Growth
Transcriptomics Uncovers Substantial Variability Associated with Alterations in Manufacturing Processes of Macrophage Cell Therapy Products Olga L
Structure of the Human Volume Regulated Anion Channel
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Identification of LRRC8 Heteromers As an Essential Component of The
Genomics of Asthma, Allergy and Chronic Rhinosinusitis
Molecular Identification of the Volume-Regulated Anion Channel VRAC
Mechanisms of Activation of LRRC8 Volume Regulated Anion Channels
Supplementary Materials For
Novel 9Q34.11 Gene Deletions Encompassing Combinations of Four Mendelian Disease Genes: STXBP1, SPTAN1, ENG, and TOR1A
Rare Copy Number Variations in Congenital Heart Disease Patients Identify Unique Genes in Left-Right Patterning
LRRC8A Sirna (H): Sc-92566
VRAC) LRRC8 Subunits in Cells and Tissues Revealed by Quantitative Immunoblotting
Structure of a Volume-Regulated Anion Channel of the LRRC8 Family
TTYH1 and TTYH2 Serve As LRRC8A-Independent Volume-Regulated Anion Channels in Cancer Cells
Large Remodeling of the Myc-Induced Cell Surface Proteome in B
LRRC8/VRAC Anion Channels Enhance β-Cell Glucose Sensing
Early Gene Expression Profiles in Bladder of C57BL/6 Mice Triggered by UPEC and Comparative Analysis with CBA Mice
Ion Channels: Regulating Cell Volume
Regulated Anion Channel Activity Is Associated with Male Infertility in Mice
Supplementary Table 1. a Full List of Cancer Genes
LRRC8A-Containing Chloride Channel Is Crucial for Cell Volume Recovery and Survival Under Hypertonic Conditions