35 Bilder zum Thema "protein kinase" bei ClipDealer

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Creatine Handwritten With Blue Marker
Structure of the protein molecule.
Insulin receptor inactivated (left) and activated (right) after insulin binding
Insulin (green) binding to the insulin receptor (violet) activates the transport of glucose (yellow) into the cell (phase 1). Illustration
Insulin (green) binding to the insulin receptor (violet) activates the transport of glucose (yellow) into the cell (depicted in 2 phases) - Illustration
Cyclic adenosine monophosphat (cAMP, red) is a second messenger used for signal transduction through the activation of various protein kinases (blue). The one in the foreground is protein kinase A. Source: PDB entry 3tnp.
Cryo-EM structure of mTORC1. 3D cartoon and molecular surface models, PDB 5h64, entity id color scheme, white background
The insulin receptor (blue) is a transmembrane protein, that is activated by insulin (orange). Insulin binding induces structural changes within the receptor that finally leads  to the activation of the glucose transporter protein.
Adenosine triphosphate (ATP) molecule isolated on black
Structure of cyclin-dependent kinase CDK9 (green) in complex with cyclin T (brown) and a 2-amino-4-heteroaryl- pyrimidine inhibitor. 3D cartoon and Gaussian surface models, PDB 4bci, white background
Crystal structure of c-raf (raf-1),  a mitogen-activated protein kinase dimer. 3D cartoon and Gaussian surface models, chain id color scheme, PDB 3omv, white background
3D image of Phosphocholine skeletal formula - molecular chemical structure of phosphatidylcholine intermediate isolated on white background
Adenosine triphosphate (ATP) molecule isolated on white
Adenosine triphosphate (ATP) molecule isolated on white
Ibrutinib molecular structure isolated on black
Crizotinib molecular structure isolated on white
Adenosine triphosphate (ATP) molecule isolated on white
Adenosine triphosphate (ATP) molecule isolated on white
Philadelphia chromosome
enzymology typography, wordart, wordcloud, enzyme, enzymology, science, chemical
CAMP Cyclic Adenosine MonoPhosphate - second messenger important in many biological processes, acronym text on blackboard
The mitotic kinase NEK7 in  the inactive (left) and active forms
Hand writing Creatine with blue marker on transparent wipe board isolated on white background.
The mitotic kinase NEK7 binds to inactive NRLP3 leading  to the activation of the inflammasome
Insulin receptor activated by insulin binding
Heat-shock protein 90 dimer (pink-blue)-HSP90 co-chaperone Cdc37 (yellow)-cyclin-dependent kinase 4 (green) complex. 3D cartoon and Gaussian surface models, PDB 5fwk, white background
Insulin (green) binding to the insulin receptor (violet) activates the transport of glucose (yellow) into the cell. Illustration
Insulin (green) binding to the insulin receptor (violet) activates the transport of glucose (yellow) into the cell. Illustration
Structure of the protein molecule.
Structure of the protein molecule.
Pathological phosphorylation (yellow) of Tau proteins (red-orange) leads to disintegration of microtubuli in the neuron axon an aggregation of the tau proteins. The transport of synaptic vesicles (orange-violet spheres) is interrupted.
Crystal structure of human cyclin B1. 3D cartoon model, PDB 2b9r, white background
Insulin molecules
Structure of cyclin-dependent kinase 2 (CDK2, blue) in complex with cyclin E (brown). 3D cartoon and Gaussian surface models, PDB 1w98, white background
Crystal structure of human JNK3 complexed with an isoquinolone inhibitor. 3D cartoon and Gaussian surface models, PDB 2zdu, white background

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