<emd xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" emdb_id="EMD-3165" version="3.0.1.1" xsi:schemaLocation="https://github.com/emdb-empiar/emdb-schemas/blob/master/v3/v3_0_1_1/emdb_relaxed.xsd">
   <admin>
      <current_status>
         <code>REL</code>
         <processing_site>PDBe</processing_site>
      </current_status>
      <sites>
         <deposition>PDBe</deposition>
         <last_processing>PDBe</last_processing>
      </sites>
      <key_dates>
         <deposition>2015-09-24</deposition>
         <header_release>2015-10-14</header_release>
         <map_release>2015-10-14</map_release>
         <update>2016-03-30</update>
      </key_dates>
      <title>Bovine mitochondrial ATP synthase state 1b</title>
      <authors_list>
         <author>Zhou A</author>
         <author>Rohou A</author>
         <author>Schep DG</author>
         <author>Bason JV</author>
         <author>Montgomery MG</author>
         <author>Walker JE</author>
         <author>Grigorieff N</author>
         <author>Rubinstein JL</author>
      </authors_list>
      <keywords>ATP synthase, rotary ATPase</keywords>
   </admin>
   <crossreferences>
      <citation_list>
         <primary_citation>
            <journal_citation published="true">
               <author order="1">Zhou A</author>
               <author order="2">Rohou A</author>
               <author order="3">Schep DG</author>
               <author order="4">Bason JV</author>
               <author order="5">Montgomery MG</author>
               <author order="6">Walker JE</author>
               <author order="7">Grigorieff N</author>
               <author order="8">Rubinstein JL</author>
               <title>Structure and conformational states of the bovine mitochondrial ATP synthase by cryo-EM</title>
               <journal>eLife</journal>
               <volume>4</volume>
               <first_page>e10180</first_page>
               <year>2015</year>
               <external_references type="PUBMED">26439008</external_references>
               <external_references type="DOI">doi:10.7554/eLife.10180</external_references>
            </journal_citation>
         </primary_citation>
      </citation_list>
      <pdb_list>
         <pdb_reference>
            <pdb_id>5are</pdb_id>
            <relationship>
               <in_frame>FULLOVERLAP</in_frame>
            </relationship>
         </pdb_reference>
      </pdb_list>
   </crossreferences>
   <sample>
      <name>Bovine mitochondrial ATP synthase</name>
      <supramolecule_list>
         <sample_supramolecule supramolecule_id="1000">
            <name>Bovine mitochondrial ATP synthase</name>
            <details>Detergent-solubilized protein complex</details>
            <oligomeric_state>One hetero-oligomeric ATP synthase complex</oligomeric_state>
            <number_unique_components>1</number_unique_components>
            <molecular_weight>
               <experimental units="MDa">0.6</experimental>
            </molecular_weight>
         </sample_supramolecule>
      </supramolecule_list>
      <macromolecule_list>
         <protein_or_peptide macromolecule_id="1">
            <name synonym="ATPase, complex V">ATP synthase</name>
            <natural_source database="NCBI">
               <organism ncbi="9913">Bos taurus</organism>
               <synonym_organism>bovine</synonym_organism>
               <tissue>Heart</tissue>
               <organelle>Mitochondria</organelle>
               <cellular_location>Mitochondrial membrane</cellular_location>
            </natural_source>
            <molecular_weight>
               <experimental units="MDa">0.6</experimental>
            </molecular_weight>
            <number_of_copies>1</number_of_copies>
            <oligomeric_state>monomer</oligomeric_state>
            <recombinant_exp_flag>false</recombinant_exp_flag>
            <recombinant_expression database="NCBI">
               </recombinant_expression>
            <sequence>
               </sequence>
         </protein_or_peptide>
      </macromolecule_list>
   </sample>
   <structure_determination_list>
      <structure_determination structure_determination_id="1">
         <method>singleParticle</method>
         <aggregation_state>particle</aggregation_state>
         <specimen_preparation_list>
            <single_particle_preparation preparation_id="1">
               <concentration units="mg/mL">8</concentration>
               <buffer>
                  <ph>7.2</ph>
                  <details>20 mM Tris-HCl, 100 mM NaCl, 0.05% (wt/v) dodecylmaltoside, 2 mM ATP, 0.02% (wt/v) NaN3</details>
               </buffer>
               <grid>
                  <details>Homemade holey carbon on 400 square mesh Cu/Rh grid, glow-discharged 2 mins</details>
               </grid>
               <vitrification>
                  <cryogen_name>ETHANE-PROPANE MIXTURE</cryogen_name>
                  <chamber_humidity units="percentage">100</chamber_humidity>
                  <instrument>FEI VITROBOT MARK III</instrument>
                  <method>Blot for 27 seconds before plunging</method>
               </vitrification>
            </single_particle_preparation>
         </specimen_preparation_list>
         <microscopy_list>
            <single_particle_microscopy microscopy_id="1">
               <microscope>FEI TITAN KRIOS</microscope>
               <illumination_mode>FLOOD BEAM</illumination_mode>
               <imaging_mode>BRIGHT FIELD</imaging_mode>
               <electron_source>FIELD EMISSION GUN</electron_source>
               <acceleration_voltage units="kV">300</acceleration_voltage>
               <nominal_cs units="mm">2.7</nominal_cs>
               <nominal_defocus_min units="&#181;m">1.2</nominal_defocus_min>
               <nominal_defocus_max units="&#181;m">4.1</nominal_defocus_max>
               <nominal_magnification>18000.0</nominal_magnification>
               <calibrated_magnification>30487.0</calibrated_magnification>
               <specimen_holder_model>FEI TITAN KRIOS AUTOGRID HOLDER</specimen_holder_model>
               <temperature>
                  <temperature_average units="K">80</temperature_average>
               </temperature>
               <alignment_procedure>
                  <legacy>
                     <astigmatism>Objective lens astigmatism was corrected at 18,000x magnification (before detector post-magnification)</astigmatism>
                  </legacy>
               </alignment_procedure>
               <details>K2 Summit direct detector device (Gatan Inc.) operated
in super-resolution mode with a 1.64 angstrom physical pixel and 0.82 angstrom super-resolution pixel.
With no specimen present, the rate of exposure of the detector was 8 electrons/pixel/second. Exposure-
fractionated movies of 20.1 s were recorded as stacks of 67 frames, so that selected
specimen areas were exposed with a total of 60.3 electrons/square angstrom.</details>
               <date>2015-03-15</date>
               <image_recording_list>
                  <image_recording>
                     <film_or_detector_model category="CCD">GATAN K2 (4k x 4k)</film_or_detector_model>
                     <digitization_details>
                        <sampling_interval units="&#181;m">5</sampling_interval>
                     </digitization_details>
                     <number_real_images>5867</number_real_images>
                     <average_electron_dose_per_image units="e/&#8491;^2">60.3</average_electron_dose_per_image>
                     <bits_per_pixel>8.</bits_per_pixel>
                  </image_recording>
               </image_recording_list>
            </single_particle_microscopy>
            <single_particle_microscopy microscopy_id="2">
               <microscope>FEI TITAN KRIOS</microscope>
               <illumination_mode>FLOOD BEAM</illumination_mode>
               <imaging_mode>BRIGHT FIELD</imaging_mode>
               <electron_source>FIELD EMISSION GUN</electron_source>
               <acceleration_voltage units="kV">300</acceleration_voltage>
               <nominal_cs units="mm">2.7</nominal_cs>
               <nominal_defocus_min units="&#181;m">1.2</nominal_defocus_min>
               <nominal_defocus_max units="&#181;m">4.1</nominal_defocus_max>
               <nominal_magnification>18000.0</nominal_magnification>
               <calibrated_magnification>30487.0</calibrated_magnification>
               <specimen_holder_model>FEI TITAN KRIOS AUTOGRID HOLDER</specimen_holder_model>
               <temperature>
                  <temperature_average units="K">80</temperature_average>
               </temperature>
               <alignment_procedure>
                  <legacy>
                     <astigmatism>Objective lens astigmatism was corrected at 18,000x magnification (before detector post-magnification)</astigmatism>
                  </legacy>
               </alignment_procedure>
               <details>K2 Summit direct detector device (Gatan Inc.) operated
in super-resolution mode with a 1.64 angstrom physical pixel and 0.82 angstrom super-resolution pixel.
With no specimen present, the rate of exposure of the detector was 8 electrons/pixel/second. Exposure-
fractionated movies of 20.1 s were recorded as stacks of 67 frames, so that selected
specimen areas were exposed with a total of 60.3 electrons/square angstrom.</details>
               <date>2014-09-28</date>
               <image_recording_list>
                  <image_recording>
                     <film_or_detector_model category="CCD">GATAN K2 (4k x 4k)</film_or_detector_model>
                     <digitization_details>
                        <sampling_interval units="&#181;m">5</sampling_interval>
                     </digitization_details>
                     <number_real_images>5867</number_real_images>
                     <average_electron_dose_per_image units="e/&#8491;^2">60.3</average_electron_dose_per_image>
                     <bits_per_pixel>8.</bits_per_pixel>
                  </image_recording>
               </image_recording_list>
            </single_particle_microscopy>
         </microscopy_list>
         <singleparticle_processing image_processing_id="1">
            <details>The particles were selected using an automatic selection program.</details>
            <ctf_correction>
               <details>Each particle</details>
            </ctf_correction>
            <final_reconstruction>
               <applied_symmetry>
                  <point_group>C1</point_group>
               </applied_symmetry>
               <algorithm>OTHER</algorithm>
               <resolution res_type="BY AUTHOR" units="&#8491;">7.4</resolution>
               <resolution_method>OTHER</resolution_method>
               <software_list>
                  <software>
                     <name>Relion, FREALIGN</name>
                  </software>
               </software_list>
               <details>To avoid noise bias, only data up to a resolution of 10 angstrom were used during refinement.</details>
               <number_images_used>22935</number_images_used>
            </final_reconstruction>
         </singleparticle_processing>
      </structure_determination>
   </structure_determination_list>
   <map format="CCP4" size_kbytes="65537">
      <file>emd_3165.map.gz</file>
      <symmetry>
         <space_group>1</space_group>
      </symmetry>
      <data_type>IMAGE STORED AS FLOATING POINT NUMBER (4 BYTES)</data_type>
      <dimensions>
         <col>256</col>
         <row>256</row>
         <sec>256</sec>
      </dimensions>
      <origin>
         <col>0</col>
         <row>0</row>
         <sec>0</sec>
      </origin>
      <spacing>
         <x>256</x>
         <y>256</y>
         <z>256</z>
      </spacing>
      <cell>
         <a units="&#8491;">419.84</a>
         <b units="&#8491;">419.84</b>
         <c units="&#8491;">419.84</c>
         <alpha units="deg">90.0</alpha>
         <beta units="deg">90.0</beta>
         <gamma units="deg">90.0</gamma>
      </cell>
      <axis_order>
         <fast>X</fast>
         <medium>Y</medium>
         <slow>Z</slow>
      </axis_order>
      <statistics>
         <minimum>-0.08716881</minimum>
         <maximum>0.41146451</maximum>
         <average>-0.00043672</average>
         <std>0.0215301</std>
      </statistics>
      <pixel_spacing>
         <x units="&#8491;">1.64</x>
         <y units="&#8491;">1.64</y>
         <z units="&#8491;">1.64</z>
      </pixel_spacing>
      <contour_list>
         <contour primary="true">
            <level>0.13</level>
            <source>AUTHOR</source>
         </contour>
      </contour_list>
      <annotation_details>Reconstruction of detergent-solubilized bovine mitochondrial ATP synthase</annotation_details>
      <details>::::EMDATABANK.org::::EMD-3165::::</details>
   </map>
   <interpretation>
      <modelling_list>
         <modelling>
            <initial_model>
               <access_code>2WSS</access_code>
               <chain>
                  <chain_id>A</chain_id>
               </chain>
               <chain>
                  <chain_id>B</chain_id>
               </chain>
               <chain>
                  <chain_id>C</chain_id>
               </chain>
               <chain>
                  <chain_id>D</chain_id>
               </chain>
               <chain>
                  <chain_id>E</chain_id>
               </chain>
               <chain>
                  <chain_id>F</chain_id>
               </chain>
               <chain>
                  <chain_id>G</chain_id>
               </chain>
               <chain>
                  <chain_id>H</chain_id>
               </chain>
               <chain>
                  <chain_id>I</chain_id>
               </chain>
               <chain>
                  <chain_id>S</chain_id>
               </chain>
            </initial_model>
            <refinement_protocol>FLEXIBLE FIT</refinement_protocol>
            <software_list>
               <software>
                  <name>Chimera, MDFF</name>
               </software>
            </software_list>
            <details>Rigid body fitting performed in Chimera first, followed by flexible fitting performed using Molecular Dynamics Flexible Fitting (MDFF).</details>
            <refinement_space>REAL</refinement_space>
         </modelling>
         <modelling>
            <initial_model>
               <access_code>2XND</access_code>
               <chain>
                  <chain_id>J</chain_id>
               </chain>
               <chain>
                  <chain_id>K</chain_id>
               </chain>
               <chain>
                  <chain_id>L</chain_id>
               </chain>
               <chain>
                  <chain_id>M</chain_id>
               </chain>
               <chain>
                  <chain_id>N</chain_id>
               </chain>
               <chain>
                  <chain_id>O</chain_id>
               </chain>
               <chain>
                  <chain_id>P</chain_id>
               </chain>
               <chain>
                  <chain_id>Q</chain_id>
               </chain>
            </initial_model>
            <refinement_protocol>FLEXIBLE FIT</refinement_protocol>
            <software_list>
               <software>
                  <name>Chimera, MDFF</name>
               </software>
            </software_list>
            <details>Rigid body fitting performed in Chimera first, followed by flexible fitting performed using Molecular Dynamics Flexible Fitting (MDFF).</details>
            <refinement_space>REAL</refinement_space>
         </modelling>
         <modelling>
            <initial_model>
               <access_code>2CLY</access_code>
               <chain>
                  <chain_id>D</chain_id>
               </chain>
               <chain>
                  <chain_id>E</chain_id>
               </chain>
               <chain>
                  <chain_id>F</chain_id>
               </chain>
            </initial_model>
            <refinement_protocol>FLEXIBLE FIT</refinement_protocol>
            <software_list>
               <software>
                  <name>Chimera, MDFF</name>
               </software>
            </software_list>
            <details>Rigid body fitting performed in Chimera first, followed by flexible fitting performed using Molecular Dynamics Flexible Fitting (MDFF).</details>
            <refinement_space>REAL</refinement_space>
         </modelling>
      </modelling_list>
   </interpretation>
</emd>