ATP Synthase by Brian Mernoff
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This model of ATP Synthase (ATPase) lets students explore how a proton concentration gradient is used to store energy in the form of ATP. Protons are placed into the protein through the hole on the topside of the membrane. The protons move into the c-subunit. After each proton is added, rotate the c-subunit. Eventually, the proton will drop out the bottom of the membrane. As the c-subunit is spun, the alpha and beta subunits will move, simulating the conformational changes that occur in order for the protein to combine ADP and Pi to form ATP. Also included is an actin filament. A fluorescently labeled actin filament was used in the experiment that first demonstrated the spinning motion of ATP synthase. (It would be really cool to use glow in the dark filament to print this part of the model and then recreate the experiment using a UV light). Understanding the function of proteins is an important part of a biology course. Specifically, students need to understand the relationship between structure and function of biological molecules. This model of ATP synthase allows students to see how the structure of ATP synthase allows it to produce ATP molecules in the electron transport chain. The model should be used after students have been taught about the structures of proteins. Students should also be familiar with the process of cellular respiration, specifically the electron transport chain in the mitochondria, ions, concentration, and diffusion. Before using the model, be sure…
About this model
ATP Synthase by Brian Mernoff is a free 3D model in the Other category, shared by the MyMiniFactory community. You can download it for 3D printing and reuse it in your own projects under the terms of its original license.
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