User:Marcos Vinícius Caetano/Sandbox 1

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== ATPase cycle of myosin VI==
== ATPase cycle of myosin VI==
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Despite the fact that myosin VI directionality is reversed, it has the '''same kinetic ATPase cycle''' of interaction with actin, as shown in the figure below. There are 3 states of different conformation: Pre-powerstroke, Rigor state and Post-rigor state <ref>Ménétrey, J., Isabet, T., Ropars, V., Mukherjea, M., Pylypenko, O., Liu, X., Perez, J., Vachette, P., Sweeney, H. L., & Houdusse, A. M. (2012). Processive steps in the reverse direction require uncoupling of the lead head lever arm of myosin VI. Molecular cell, 48(1), 75–86. https://doi.org/10.1016/j.molcel.2012.07.034</ref>.
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Despite the fact that myosin VI directionality is reversed, it has the '''same kinetic ATPase cycle''' of interaction with actin, as shown in the figure below. There are 3 states of different conformation: Pre-powerstroke, Rigor state and Post-rigor state <ref>Ménétrey, J., Isabet, T., Ropars, V., Mukherjea, M., Pylypenko, O., Liu, X., Perez, J., Vachette, P., Sweeney, H. L., & Houdusse, A. M. (2012). Processive steps in the reverse direction require uncoupling of the lead head lever arm of myosin VI. Molecular cell, 48(1), 75–86. https://doi.org/10.1016/j.molcel.2012.07.034</ref>. <ref>Ménétrey, J., Llinas, P., Cicolari, J., Squires, G., Liu, X., Li, A., Sweeney, H. L., & Houdusse, A. (2008). The post-rigor structure of myosin VI and implications for the recovery stroke. The EMBO journal, 27(1), 244–252. https://doi.org/10.1038/sj.emboj.7601937</ref>
[[Image:Cycle ATP.JPG|500px]]
[[Image:Cycle ATP.JPG|500px]]
''Figure 2: ATPase cycle of myosins.''
''Figure 2: ATPase cycle of myosins.''
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'''Pre-powerstroke''': myosin binds to actin, it has hydrolyzed ATP, but keeps the products MgADP and Pi. The interaction of myosin with actin results in the release of Pi, which increases the binding affinity for actin and triggers the release of MgADP to form a rigor conformation on actin. At this moment, occurs the powerstroke, a large movement (11 nm) of the lever arm between the pre-powerstroke and rigor state, during which the converter and the CaM rotates and alters its conformation.
'''Pre-powerstroke''': myosin binds to actin, it has hydrolyzed ATP, but keeps the products MgADP and Pi. The interaction of myosin with actin results in the release of Pi, which increases the binding affinity for actin and triggers the release of MgADP to form a rigor conformation on actin. At this moment, occurs the powerstroke, a large movement (11 nm) of the lever arm between the pre-powerstroke and rigor state, during which the converter and the CaM rotates and alters its conformation.
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== References ==
== References ==
<references />
<references />
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*Ménétrey, J., Llinas, P., Cicolari, J., Squires, G., Liu, X., Li, A., Sweeney, H. L., & Houdusse, A. (2008). The post-rigor structure of myosin VI and implications for the recovery stroke. The EMBO journal, 27(1), 244–252. https://doi.org/10.1038/sj.emboj.7601937
 

Revision as of 21:04, 14 July 2023

Myosin VI nucleotide-free (MDinsert2-IQ) crystal structure (2BKI)

Myosin VI nucleotide-free (MDinsert2-IQ) crystal structure - 2BKI

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