The structure of S100A12 in a hexameric form and its proposed role in receptor signalling
about
Pro-inflammatory S100A8 and S100A9 proteins: self-assembly into multifunctional native and amyloid complexesBoth Ca2+ and Zn2+ are essential for S100A12 protein oligomerization and functionStructural and functional insights into RAGE activation by multimeric S100BBinding of transition metals to S100 proteinsReceptor for advanced glycation end products is detrimental during influenza A virus pneumonia.Molecular Mechanisms of Mild and Severe Pneumonia: Insights from RNA SequencingCarboxylated N-glycans on RAGE promote S100A12 binding and signaling.Placental growth factor, pregnancy-associated plasma protein-A, soluble receptor for advanced glycation end products, extracellular newly identified receptor for receptor for advanced glycation end products binding protein and high mobility group boInfluence of nonenzymatic posttranslational modifications on constitution, oligomerization and receptor binding of S100A12Receptor for advanced glycation end products involved in circulating endothelial cells release from human coronary endothelial cells induced by C-reactive protein.Ligands of the receptor for advanced glycation end products, including high-mobility group box 1, limit bacterial dissemination during Escherichia coli peritonitis.S100A11, an dual mediator for growth regulation of human keratinocytesCalcium-dependent and -independent interactions of the S100 protein family.The extracellular region of the receptor for advanced glycation end products is composed of two independent structural units.Transamidation by transglutaminase 2 transforms S100A11 calgranulin into a procatabolic cytokine for chondrocytes.RAGE (Receptor for Advanced Glycation Endproducts), RAGE ligands, and their role in cancer and inflammation.Endogenous damage-associated molecular pattern molecules at the crossroads of inflammation and cancer.Calcium Ions Tune the Zinc-Sequestering Properties and Antimicrobial Activity of Human S100A12.The Calcium-Dependent Interaction of S100B with Its Protein Targets.Bioinorganic Explorations of Zn(II) Sequestration by Human S100 Host-Defense Proteins.S100B as an antagonist to block the interaction between S100A1 and the RAGE V domain.
P2860
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P2860
The structure of S100A12 in a hexameric form and its proposed role in receptor signalling
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2002 nî lūn-bûn
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2002 թուականի Մարտին հրատարակուած գիտական յօդուած
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2002 թվականի մարտին հրատարակված գիտական հոդված
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2002年の論文
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2002年論文
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2002年論文
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2002年論文
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2002年論文
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2002年論文
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2002年论文
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name
The structure of S100A12 in a hexameric form and its proposed role in receptor signalling
@ast
The structure of S100A12 in a hexameric form and its proposed role in receptor signalling
@en
The structure of S100A12 in a hexameric form and its proposed role in receptor signalling
@nl
type
label
The structure of S100A12 in a hexameric form and its proposed role in receptor signalling
@ast
The structure of S100A12 in a hexameric form and its proposed role in receptor signalling
@en
The structure of S100A12 in a hexameric form and its proposed role in receptor signalling
@nl
prefLabel
The structure of S100A12 in a hexameric form and its proposed role in receptor signalling
@ast
The structure of S100A12 in a hexameric form and its proposed role in receptor signalling
@en
The structure of S100A12 in a hexameric form and its proposed role in receptor signalling
@nl
P2093
P1476
The structure of S100A12 in a hexameric form and its proposed role in receptor signalling
@en
P2093
A A Antson
E J Dodson
E Lukanidin
G G Dodson
H J Burrell
I B Bronstein
K S Wilson
N J Maitland
P304
P407
P577
2002-03-01T00:00:00Z