scholarly article | Q13442814 |
P6179 | Dimensions Publication ID | 1026845025 |
P356 | DOI | 10.1007/S00018-016-2360-5 |
P932 | PMC publication ID | 5272906 |
P698 | PubMed publication ID | 27628304 |
P2093 | author name string | Zhao J | |
Oude Elferink RP | |||
de Jonge WJ | |||
van Dijk R | |||
Castricum Z | |||
Ghiboub M | |||
Hiralall JK | |||
Ho-Mok KS | |||
Marsman C | |||
Paulusma CC | |||
van der Mark VA | |||
P2860 | cites work | Dynamic regulation of cardiolipin by the lipid pump Atp8b1 determines the severity of lung injury in experimental pneumonia | Q23918727 |
Heteromeric interactions required for abundance and subcellular localization of human CDC50 proteins and class 1 P4-ATPases | Q24303218 | ||
Characterization of the EFC/F-BAR domain protein, FCHO2 | Q24314507 | ||
ATP9B, a P4-ATPase (a putative aminophospholipid translocase), localizes to the trans-Golgi network in a CDC50 protein-independent manner | Q24337824 | ||
Accurate normalization of real-time quantitative RT-PCR data by geometric averaging of multiple internal control genes | Q24534395 | ||
Physical contact between lipopolysaccharide and toll-like receptor 4 revealed by genetic complementation | Q24670236 | ||
Regulation of small GTPases by GEFs, GAPs, and GDIs | Q26825750 | ||
Co-operation of TLR4 and raft proteins in LPS-induced pro-inflammatory signaling | Q26866939 | ||
Endocytic sorting and recycling require membrane phosphatidylserine asymmetry maintained by TAT-1/CHAT-1 | Q27345025 | ||
The role of pattern-recognition receptors in innate immunity: update on Toll-like receptors | Q27860900 | ||
An essential subfamily of Drs2p-related P-type ATPases is required for protein trafficking between Golgi complex and endosomal/vacuolar system | Q27932606 | ||
Drs2p-related P-type ATPases Dnf1p and Dnf2p are required for phospholipid translocation across the yeast plasma membrane and serve a role in endocytosis | Q27939868 | ||
Clinical and biochemical findings in progressive familial intrahepatic cholestasis | Q28237703 | ||
A gene encoding a P-type ATPase mutated in two forms of hereditary cholestasis | Q28264570 | ||
Phospholipid flippase activities and substrate specificities of human type IV P-type ATPases localized to the plasma membrane | Q28383160 | ||
P4-ATPases: lipid flippases in cell membranes | Q28388229 | ||
P4 ATPases: flippases in health and disease | Q28397755 | ||
TRAM is specifically involved in the Toll-like receptor 4-mediated MyD88-independent signaling pathway | Q28505835 | ||
TRAM couples endocytosis of Toll-like receptor 4 to the induction of interferon-beta | Q28506630 | ||
A mouse genetic model for familial cholestasis caused by ATP8B1 mutations reveals perturbed bile salt homeostasis but no impairment in bile secretion | Q28507675 | ||
CD14 controls the LPS-induced endocytosis of Toll-like receptor 4 | Q28594101 | ||
Genome-wide association study identifies multiple susceptibility loci for pulmonary fibrosis | Q28943334 | ||
Endocytic pathways regulate Toll-like receptor 4 signaling and link innate and adaptive immunity | Q30476891 | ||
The F-BAR domains from srGAP1, srGAP2 and srGAP3 regulate membrane deformation differently. | Q30529262 | ||
Drs2p-dependent formation of exocytic clathrin-coated vesicles in vivo. | Q52547804 | ||
The lipid flippase heterodimer ATP8B1-CDC50A is essential for surface expression of the apical sodium-dependent bile acid transporter (SLC10A2/ASBT) in intestinal Caco-2 cells. | Q54191317 | ||
Lipopolysaccharide and ceramide docking to CD14 provokes ligand-specific receptor clustering in rafts | Q61863052 | ||
Cutting edge: endotoxin tolerance in mouse peritoneal macrophages correlates with down-regulation of surface toll-like receptor 4 expression | Q73567260 | ||
Enhancement of endocytosis due to aminophospholipid transport across the plasma membrane of living cells | Q74590841 | ||
Identification and characterization of CDC50A, CDC50B and CDC50C genes in silico | Q80580840 | ||
The flip side of cardiolipin import | Q83810295 | ||
Phosphatidylserine is polarized and required for proper Cdc42 localization and for development of cell polarity | Q85028296 | ||
The functions of anionic phospholipids during clathrin-mediated endocytosis site initiation and vesicle formation | Q30536943 | ||
Phosphatidylserine flipping enhances membrane curvature and negative charge required for vesicular transport. | Q30544961 | ||
Amplification efficiency: linking baseline and bias in the analysis of quantitative PCR data | Q33411668 | ||
The identification of markers of macrophage differentiation in PMA-stimulated THP-1 cells and monocyte-derived macrophages | Q33525044 | ||
CDC50 proteins are critical components of the human class-1 P4-ATPase transport machinery | Q34412576 | ||
Differences in presentation and progression between severe FIC1 and BSEP deficiencies | Q34592094 | ||
Biological membranes as bilayer couples. A molecular mechanism of drug-erythrocyte interactions | Q35116324 | ||
Transport through recycling endosomes requires EHD1 recruitment by a phosphatidylserine translocase. | Q35192746 | ||
Protective role of the dynamin inhibitor Dynasore against the cholesterol-dependent cytolysin of Trueperella pyogenes | Q35410523 | ||
CD14 dependence of TLR4 endocytosis and TRIF signaling displays ligand specificity and is dissociable in endotoxin tolerance | Q35845957 | ||
Phospholipid flippases: building asymmetric membranes and transport vesicles. | Q36010753 | ||
ATP8B1-mediated spatial organization of Cdc42 signaling maintains singularity during enterocyte polarization | Q36102727 | ||
Missense mutation in the ATPase, aminophospholipid transporter protein ATP8A2 is associated with cerebellar atrophy and quadrupedal locomotion | Q36611976 | ||
ATP11B mediates platinum resistance in ovarian cancer | Q36793431 | ||
P4-ATPase requirement for AP-1/clathrin function in protein transport from the trans-Golgi network and early endosomes | Q36796829 | ||
Endotoxin tolerance: new mechanisms, molecules and clinical significance | Q37603612 | ||
Membrane shaping by the Bin/amphiphysin/Rvs (BAR) domain protein superfamily | Q37902570 | ||
Accessory molecules for Toll-like receptors and their function | Q37981048 | ||
Role of the Toll Like receptor (TLR) radical cycle in chronic inflammation: possible treatments targeting the TLR4 pathway | Q38084202 | ||
Lipid landscapes and pipelines in membrane homeostasis | Q38217765 | ||
Dynasore - not just a dynamin inhibitor. | Q38427839 | ||
CD14, TLR4 and TRAM Show Different Trafficking Dynamics During LPS Stimulation | Q38906875 | ||
Cellular localization and biochemical analysis of mammalian CDC50A, a glycosylated β-subunit for P4 ATPases | Q39410684 | ||
Rab proteins mediate Golgi transport of caveola-internalized glycosphingolipids and correct lipid trafficking in Niemann-Pick C cells | Q39738033 | ||
Membrane phosphatidylserine regulates surface charge and protein localization | Q40026492 | ||
Suppressor of cytokine signaling 1 negatively regulates Toll-like receptor signaling by mediating Mal degradation | Q40328896 | ||
Differential induction of endotoxin tolerance by lipopolysaccharides derived from Porphyromonas gingivalis and Escherichia coli | Q40773060 | ||
Endocytosis is enhanced in Tangier fibroblasts: possible role of ATP-binding cassette protein A1 in endosomal vesicular transport | Q40786191 | ||
Inhibition of lipopolysaccharide-induced signal transduction in endotoxin-tolerized mouse macrophages: dysregulation of cytokine, chemokine, and toll-like receptor 2 and 4 gene expression | Q42488328 | ||
Lentiviral vectors for efficient transduction of isolated primary quiescent hepatocytes | Q43954074 | ||
Mediators of innate immune recognition of bacteria concentrate in lipid rafts and facilitate lipopolysaccharide-induced cell activation | Q44015062 | ||
CD14 is required for MyD88-independent LPS signaling. | Q45990170 | ||
The Arabidopsis P4-ATPase ALA3 localizes to the golgi and requires a beta-subunit to function in lipid translocation and secretory vesicle formation. | Q46085133 | ||
Polarization profiles of human M-CSF-generated macrophages and comparison of M1-markers in classically activated macrophages from GM-CSF and M-CSF origin | Q46791378 | ||
ATP8B1 requires an accessory protein for endoplasmic reticulum exit and plasma membrane lipid flippase activity | Q46941494 | ||
The C. elegans P4-ATPase TAT-1 regulates lysosome biogenesis and endocytosis | Q47069012 | ||
Electrophysiological Analysis of the Mutated Na,K-ATPase Cation Binding Pocket | Q48820652 | ||
P275 | copyright license | Creative Commons Attribution 4.0 International | Q20007257 |
P6216 | copyright status | copyrighted | Q50423863 |
P2507 | corrigendum / erratum | Erratum to: Phospholipid flippases attenuate LPS-induced TLR4 signaling by mediating endocytic retrieval of Toll-like receptor 4 | Q89227420 |
P4510 | describes a project that uses | ImageJ | Q1659584 |
ImageQuant | Q112270642 | ||
P433 | issue | 4 | |
P921 | main subject | toll-like receptor | Q408004 |
P304 | page(s) | 715-730 | |
P577 | publication date | 2016-09-14 | |
P1433 | published in | Cellular and Molecular Life Sciences | Q5058352 |
P1476 | title | Phospholipid flippases attenuate LPS-induced TLR4 signaling by mediating endocytic retrieval of Toll-like receptor 4 | |
P478 | volume | 74 |
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Q47122587 | Characterization of plasma proteins in children of different Mycobacterium tuberculosis infection status using label-free quantitative proteomics |
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