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Its importance can be exemplified by the fact that the protein has been known to be highly conserved in eukaryotes. Highly conserved structures that do not undergo significant evolutionary changes imply that the structure is mandatory for cell or organism survival and that any mutations in the genetic sequence that codes for the protein would be deleterious. The function of calmodulin is typically studied using yeast as a model organism. This is done for a variety of reasons, including the fact that yeast has a fully annotated genome with human homologues for genes associated with their ion channels, yeast is fast growing and they are heat stable<ref>Wolfe, D. M. D. M. (2006). Channeling studies in yeast: Yeast as a model for channelopathies?</ref>.
Its importance can be exemplified by the fact that the protein has been known to be highly conserved in eukaryotes. Highly conserved structures that do not undergo significant evolutionary changes imply that the structure is mandatory for cell or organism survival and that any mutations in the genetic sequence that codes for the protein would be deleterious. The function of calmodulin is typically studied using yeast as a model organism. This is done for a variety of reasons, including the fact that yeast has a fully annotated genome with human homologues for genes associated with their ion channels, yeast is fast growing and they are heat stable<ref>Wolfe, D. M. D. M. (2006). Channeling studies in yeast: Yeast as a model for channelopathies?</ref>.
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[[Image:Calmodulin_fig_1.png | thumb]]
[[Image:Calmodulin_fig_1.png | thumb]]

Revision as of 22:13, 5 December 2015

Calmodulin

Homo sapien calmodulin showing Ca+2

Drag the structure with the mouse to rotate

Bibliography