Sandbox Reserved 930: Difference between revisions

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• S1 nucleotide-free state corresponding to the near-rigor conformation of myosin [http://www.pdb.org/pdb/explore/explore.do?structureId=1DFK 1DFK]
• S1 nucleotide-free state corresponding to the near-rigor conformation of myosin [http://www.pdb.org/pdb/explore/explore.do?structureId=1DFK 1DFK]


• S1 Mg-ADP.VO4 state corresponding to the pre-power stroke conformation [http://www.pdb.org/pdb/explore/explore.do?structureId=1kk8 1KK8]
• S1 Mg-ADP&bullVO4 state corresponding to the pre-power stroke conformation [http://www.pdb.org/pdb/explore/explore.do?structureId=1kk8 1KK8]


• S1 Mg-ADP state corresponding to the myosin detached state [http://www.rcsb.org/pdb/explore/explore.do?structureId=1b7t 1B7T]
• S1 Mg-ADP state corresponding to the myosin detached state [http://www.rcsb.org/pdb/explore/explore.do?structureId=1b7t 1B7T]


Comparing the available crystal structures of different myosin the S1 unit enable us to understand the conformational changes within the motor domain during the contractile cycle. Here mainly the structure and function of the MD in the S1 Mg-ADP.VO4 (pre power stroke) state will be discussed.
Comparing the available crystal structures of different myosin the S1 unit enable us to understand the conformational changes within the motor domain during the contractile cycle. Here mainly the structure and function of the MD in the S1 Mg-ADP&bullVO4 (pre power stroke) state will be discussed.


depending on the nucleotide content in the active site. Here mainly the structure and function of MD relevant in the S1 Mg-ADP (pre power stroke) state will be discussed.
depending on the nucleotide content in the active site. Here mainly the structure and function of MD relevant in the S1 Mg-ADP (pre power stroke) state will be discussed.