Sandbox WWC6: Difference between revisions
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<Structure load='7AHL' size='350' frame='true' align='right' caption='Stapholococcal alpha-hemolysin' scene='Insert optional scene name here' /> | <Structure load='7AHL' size='350' frame='true' align='right' caption='Stapholococcal alpha-hemolysin' scene='Insert optional scene name here' /> | ||
<scene name='69/696302/Beta-hemolysin/1'>TextToBeDisplayed</scene> | |||
==Function== | ==Function== | ||
Hemolysins act through disruption of the cell membrane. Two main functions destroy phospholipid membranes: pore formation and phosphilipid hydrosysis. <ref>http://www.sciencedirect.com/science/article/pii/S0005273610002610</ref> Pore formation, the most common mechanism of hemolysin cell <ref name ="sod"/> This information was first discovered by Hodgkin and Huxley in 1952. <ref name ="physio">https://en.wikipedia.org/wiki/Hodgkin%E2%80%93Huxley_model</ref> For more information on the role of sodium channels in electrical signaling, click [https://en.wikipedia.org/wiki/Action_potential here]. | Hemolysins act through disruption of the cell membrane. Two main functions destroy phospholipid membranes: pore formation and phosphilipid hydrosysis. <ref>http://www.sciencedirect.com/science/article/pii/S0005273610002610</ref> Pore formation, the most common mechanism of hemolysin cell <ref name ="sod"/> This information was first discovered by Hodgkin and Huxley in 1952. <ref name ="physio">https://en.wikipedia.org/wiki/Hodgkin%E2%80%93Huxley_model</ref> For more information on the role of sodium channels in electrical signaling, click [https://en.wikipedia.org/wiki/Action_potential here]. | ||