Sandbox 154: Difference between revisions
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The transition between G and F-actin begins with a stabilized oligomer of ATP-actin units formed through a nucleation-condensation type fold pattern<ref name="Pfaendtner">PMID:19620726</ref>. Addition of ATP-monomeric units to either end subsequently occurs, however, because of a difference in charge polarity in the two ends, there is preferential addition to what is termed the "plus (+) end" or the "barbed-end". On the opposite end, the "minus (-) end" or the "pointed end", there is preferential dissociation of actin units<ref name="Mitchinson">PMID:1493331</ref>. | The transition between G and F-actin begins with a stabilized oligomer of ATP-actin units formed through a nucleation-condensation type fold pattern<ref name="Pfaendtner">PMID:19620726</ref>. Addition of ATP-monomeric units to either end subsequently occurs, however, because of a difference in charge polarity in the two ends, there is preferential addition to what is termed the "plus (+) end" or the "barbed-end". On the opposite end, the "minus (-) end" or the "pointed end", there is preferential dissociation of actin units<ref name="Mitchinson">PMID:1493331</ref>. | ||
After attachment of the ATP-bound actin, hydrolysis of the ATP occurs yielding the ADP and | After attachment of the ATP-bound actin, hydrolysis of the ATP occurs yielding the ADP and P<sub>i</sub> bound state. Subsequent loss of a P<sub>i</sub> leaves the ADP-actin state<ref name="Chen">PMID:10637608</ref>. Because of the potential for addition or removal of monomeric units to occur at both ends, the assembly of F-actin may be described in terms of equilibrium. However, because the rate of ATP-actin association is ten-fold that of ADP-actin dissociation, the f-actin has the appearance of moving forward, or "treadmilling"<ref name="Carlier">PMID:3801442</ref>. ADP-actin monomers dissociate at the minus end and become recycled to ATP-actin so polymerization at the plus end may occur once again. | ||
== Structure == | == Structure == | ||