k Dynamin enzyme, molecular model Dynamin enzyme. Computer model showing three perspective views of the tertiary structure of the enzyme dynamin. The two protein chains that form a pleckstrin homology PH domain can be seen green and purple. Domains are structural regions of enzymes that are often actively involved in biological processes. Dynamin is primarily responsible for facilitating the absorption of material from outside the cell endocytosis in eukaryotic cells. Dynamins PH domain is thought to play an important role in the enzymes function in endocytosis. Stock Photo - Afloimages
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Dynamin enzyme, molecular model Dynamin enzyme. Computer model showing three perspective views of the tertiary structure of the enzyme dynamin. The two protein chains that form a pleckstrin homology  PH  domain can be seen  green and purple . Domains are structural regions of enzymes that are often actively involved in biological processes. Dynamin is primarily responsible for facilitating the absorption of material from outside the cell  endocytosis  in eukaryotic cells. Dynamin s PH domain is thought to play an important role in the enzyme s function in endocytosis.
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Dynamin enzyme, molecular model

Dynamin enzyme. Computer model showing three perspective views of the tertiary structure of the enzyme dynamin. The two protein chains that form a pleckstrin homology (PH) domain can be seen (green and purple). Domains are structural regions of enzymes that are often actively involved in biological processes. Dynamin is primarily responsible for facilitating the absorption of material from outside the cell (endocytosis) in eukaryotic cells. Dynamin's PH domain is thought to play an important role in the enzyme's function in endocytosis.

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