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Posttranslational modification of proteins with fatty acids in platelets
L. Muszbek, É Ráz,
M. Laposata
Research output
:
Contribution to journal
›
Article
›
peer-review
6
Scopus citations
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Dive into the research topics of 'Posttranslational modification of proteins with fatty acids in platelets'. Together they form a unique fingerprint.
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Keyphrases
Fatty Acids
100%
Platelets
100%
Protein Post-translational Modification
100%
Protein Synthesis
40%
Protein Modification
40%
Post-translational
40%
Thioesterification
40%
Palmitate
20%
Protein-protein Interaction
20%
Membrane Protein
20%
Glycoprotein
20%
Lipids
20%
G Protein
20%
Protein Membrane
20%
Membrane Lipids
20%
N-myristoylation
20%
P-selectin
20%
Cysteine Residues
20%
Acylate
20%
Active Protein
20%
Long-chain Fatty Acids
20%
Co-translational
20%
Chain Length
20%
Unsaturation
20%
Glycoprotein Ib
20%
Direct Modification
20%
Hydrophobic Proteins
20%
HLA Class I
20%
Protein-lipid Interactions
20%
Glycine Residue
20%
Biochemistry, Genetics and Molecular Biology
Posttranslational Modification
100%
Platelet
100%
Protein Biosynthesis
66%
Protein-Protein Interaction
33%
Glycoprotein
33%
Lipid
33%
N-Terminus
33%
Protein Modification
33%
Myristoylation
33%
Membrane Lipid
33%
P-Selectin
33%
Protein-Lipid Interaction
33%
CD9
33%
Glycoprotein Ib
33%
Cysteine
33%
G Protein
33%
Palmitic Acid
33%
Neuroscience
Posttranslational Modification
100%
Fatty Acids
100%
Platelet
100%
Protein Biosynthesis
40%
Glycoprotein
20%
G Protein
20%
Membrane Lipid
20%
Amino Terminal Sequence
20%
Protein-Protein Interaction
20%
Cysteine
20%
Palmitic Acid
20%
P-Selectin
20%
Protein Modification
20%
Long Chain Fatty Acid
20%
Protein Lipid Interaction
20%
CD36 Antigen
20%
CD9
20%
Glycoprotein Ib
20%
Myristoylation
20%
Immunology and Microbiology
Platelet
100%
Protein Processing
100%
Protein Synthesis
66%
Glycoprotein
66%
Protein Protein Interaction
33%
Amino Terminal Sequence
33%
Protein Modification
33%
P-Selectin
33%
Protein Lipid Interaction
33%
Myristylation
33%