<emd xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" emdb_id="EMD-3436" 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>2016-05-11</deposition>
         <header_release>2016-06-15</header_release>
         <map_release>2016-07-20</map_release>
         <update>2016-08-24</update>
      </key_dates>
      <title>Structure of the ADP-bound VAT complex</title>
      <authors_list>
         <author>Huang R</author>
         <author>Ripstein ZA</author>
         <author>Augustyniak R</author>
         <author>Lazniewski M</author>
         <author>Ginalski K</author>
         <author>Kay LE</author>
         <author>Rubinstein JL</author>
      </authors_list>
      <keywords>VAT, proteasome, protein dynamics, unfoldase, conformations, AAA+ ATPase</keywords>
   </admin>
   <crossreferences>
      <citation_list>
         <primary_citation>
            <journal_citation published="true">
               <author order="1">Rui H</author>
               <author order="2">Ripstein ZA</author>
               <author order="3">Augustyniak R</author>
               <author order="4">Lazniewski M</author>
               <author order="5">Ginalski K</author>
               <author order="6">Kay LE</author>
               <author order="7">Rubinstein JL</author>
               <title>Unfolding the mechanism of the AAA+ unfoldase VAT by a combined cryo-EM, solution NMR study.</title>
               <journal>PROC.NAT.ACAD.SCI.USA</journal>
               <volume>113</volume>
               <first_page>e4190</first_page>
               <last_page>e4199</last_page>
               <year>2016</year>
               <external_references type="PUBMED">27402735</external_references>
               <external_references type="DOI">doi:10.1073/pnas.1603980113</external_references>
            </journal_citation>
         </primary_citation>
      </citation_list>
      <pdb_list>
         <pdb_reference>
            <pdb_id>5g4f</pdb_id>
            <relationship>
               <in_frame>FULLOVERLAP</in_frame>
            </relationship>
         </pdb_reference>
      </pdb_list>
   </crossreferences>
   <sample>
      <name>VAT (CDC48 homologue)</name>
      <supramolecule_list>
         <sample_supramolecule supramolecule_id="1000">
            <name>VAT (CDC48 homologue)</name>
            <oligomeric_state>homohexamer</oligomeric_state>
            <number_unique_components>1</number_unique_components>
            <molecular_weight>
               <theoretical units="MDa">0.5</theoretical>
            </molecular_weight>
         </sample_supramolecule>
      </supramolecule_list>
      <macromolecule_list>
         <protein_or_peptide macromolecule_id="1">
            <name synonym="VAT">VCP like ATPase from T. Acidophilum</name>
            <natural_source database="NCBI">
               <organism ncbi="2303">Thermoplasma acidophilum</organism>
            </natural_source>
            <molecular_weight>
               <theoretical units="MDa">0.83</theoretical>
            </molecular_weight>
            <number_of_copies>6</number_of_copies>
            <oligomeric_state>Hexamer</oligomeric_state>
            <recombinant_exp_flag>true</recombinant_exp_flag>
            <recombinant_expression database="NCBI">
               <recombinant_organism ncbi="562">Escherichia coli</recombinant_organism>
               <recombinant_strain>BL21(DE3)</recombinant_strain>
               <recombinant_plasmid>pProEx</recombinant_plasmid>
            </recombinant_expression>
            <sequence>
               <external_references type="UNIPROTKB">O05209</external_references>
               <external_references type="GO">GO:0008152</external_references>
               <external_references type="GO">GO:0000166</external_references>
               <external_references type="GO">GO:0005524</external_references>
               <external_references type="GO">GO:0016787</external_references>
               <external_references type="INTERPRO">IPR003593</external_references>
               <external_references type="INTERPRO">IPR005938</external_references>
               <external_references type="INTERPRO">IPR009010</external_references>
               <external_references type="INTERPRO">IPR003959</external_references>
               <external_references type="INTERPRO">IPR003960</external_references>
               <external_references type="INTERPRO">IPR004201</external_references>
               <external_references type="INTERPRO">IPR029067</external_references>
               <external_references type="INTERPRO">IPR003338</external_references>
               <external_references type="INTERPRO">IPR027417</external_references>
            </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">7</concentration>
               <buffer>
                  <ph>7.5</ph>
                  <details>50 mM HEPES, 100 mM NaCl, 5mM ADP</details>
               </buffer>
               <grid>
                  <details>400 mesh Cu/Rh grid with homemade nanofabricated holy carbon support</details>
               </grid>
               <vitrification>
                  <cryogen_name>ETHANE-PROPANE MIXTURE</cryogen_name>
                  <chamber_humidity units="percentage">100</chamber_humidity>
                  <instrument>FEI VITROBOT MARK III</instrument>
                  <details>Sample held at 4 degrees Celsius before freezing</details>
                  <method>Blot for 4 seconds before plunging</method>
               </vitrification>
            </single_particle_preparation>
         </specimen_preparation_list>
         <microscopy_list>
            <single_particle_microscopy microscopy_id="1">
               <microscope>FEI TECNAI F20</microscope>
               <illumination_mode>FLOOD BEAM</illumination_mode>
               <imaging_mode>BRIGHT FIELD</imaging_mode>
               <electron_source>FIELD EMISSION GUN</electron_source>
               <acceleration_voltage units="kV">200</acceleration_voltage>
               <nominal_cs units="mm">2</nominal_cs>
               <nominal_defocus_min units="&#181;m">1.8</nominal_defocus_min>
               <nominal_defocus_max units="&#181;m">3.5</nominal_defocus_max>
               <nominal_magnification>25000.0</nominal_magnification>
               <calibrated_magnification>34483.0</calibrated_magnification>
               <specimen_holder_model>GATAN LIQUID NITROGEN</specimen_holder_model>
               <alignment_procedure>
                  <legacy>
                     <astigmatism>Objective lens astigmatism was corrected at 175,000 times magnification by inspection of FFT</astigmatism>
                  </legacy>
               </alignment_procedure>
               <date>2015-05-01</date>
               <image_recording_list>
                  <image_recording>
                     <film_or_detector_model category="CCD">GATAN K2 SUMMIT (4k x 4k)</film_or_detector_model>
                     <digitization_details>
                        <sampling_interval units="&#181;m">1.45</sampling_interval>
                     </digitization_details>
                     <number_real_images>912</number_real_images>
                     <average_electron_dose_per_image units="e/&#8491;^2">32</average_electron_dose_per_image>
                     <details>Every image is the average of 30 frames recorded by the direct electron detector</details>
                     <bits_per_pixel>32.</bits_per_pixel>
                  </image_recording>
               </image_recording_list>
               <specimen_holder>Gatan 626</specimen_holder>
            </single_particle_microscopy>
         </microscopy_list>
         <singleparticle_processing image_processing_id="1">
            <details>Whole frame alignment was performed with
alignframes_lmbfgs, and the resulting averages of frames were used for CTF parameter determination with CTFFIND4. Anisotropic magnification was corrected for particle images and CTF parameters. Automated particle picking was done in Relion. Individual particle alignment and exposure weighting was done with alignparts_lmbfgs. Classification and refinement were perfomed with Relion.</details>
            <ctf_correction>
               <details>Each Micrograph</details>
            </ctf_correction>
            <final_reconstruction>
               <applied_symmetry>
                  <point_group>C1</point_group>
               </applied_symmetry>
               <resolution res_type="BY AUTHOR" units="&#8491;">7.0</resolution>
               <resolution_method>OTHER</resolution_method>
               <software_list>
                  <software>
                     <name>Relion</name>
                  </software>
               </software_list>
               <number_images_used>71258</number_images_used>
            </final_reconstruction>
         </singleparticle_processing>
      </structure_determination>
   </structure_determination_list>
   <map format="CCP4" size_kbytes="65537">
      <file>emd_3436.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;">371.2</a>
         <b units="&#8491;">371.2</b>
         <c units="&#8491;">371.2</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>-0.10781565</minimum>
         <maximum>0.26468402</maximum>
         <average>0.00088653</average>
         <std>0.00825485</std>
      </statistics>
      <pixel_spacing>
         <x units="&#8491;">1.45</x>
         <y units="&#8491;">1.45</y>
         <z units="&#8491;">1.45</z>
      </pixel_spacing>
      <contour_list>
         <contour primary="true">
            <level>0.065</level>
            <source>AUTHOR</source>
         </contour>
      </contour_list>
      <annotation_details>ADP-bound VAT complex</annotation_details>
      <details>::::EMDATABANK.org::::EMD-3436::::</details>
   </map>
</emd>