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    <admin>
        <current_status>
            <date>2024-04-10</date>
            <code>REL</code>
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        <sites>
            <deposition>PDBe</deposition>
            <last_processing>PDBe</last_processing>
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        <key_dates>
            <deposition>2023-11-15</deposition>
            <header_release>2024-03-06</header_release>
            <map_release>2024-03-06</map_release>
            <update>2024-04-10</update>
        </key_dates>
        <grant_support>
            <grant_reference>
                <funding_body>Gerty Cori Programme, Medical Faculty, University of Munster</funding_body>
                <code>EXC 1003 - CiM</code>
                <country>Germany</country>
            </grant_reference>
            <grant_reference>
                <funding_body>German Research Foundation (DFG)</funding_body>
                <code>264061860</code>
                <country>Germany</country>
            </grant_reference>
            <grant_reference>
                <funding_body>Germanys Excellence Strategy</funding_body>
                <code>EXC 2067/1-390729940</code>
                <country>Germany</country>
            </grant_reference>
            <grant_reference>
                <funding_body>German Research Foundation (DFG)</funding_body>
                <code>448415290</code>
                <country>Germany</country>
            </grant_reference>
            <grant_reference>
                <funding_body>Austrian Science Fund</funding_body>
                <code>P36187-B</code>
                <country>Austria</country>
            </grant_reference>
        </grant_support>
        <title>Lipid droplets in proximity to a vacuole in dLdo strain cell after 5-day starvation.</title>
        <authors_list>
            <author ORCID="0000-0002-8707-6619">Collado J</author>
        </authors_list>
        <keywords>Lipid droplet, vacuole, membrane contact site., MEMBRANE PROTEIN</keywords>
    </admin>
    <crossreferences>
        <citation_list>
            <primary_citation>
                <journal_citation published="true">
                    <author order="1">Diep DTV</author>
                    <author order="2">Collado J</author>
                    <author order="3">Hugenroth M</author>
                    <author order="4">Fausten RM</author>
                    <author order="5">Percifull L</author>
                    <author order="6">Walte M</author>
                    <author order="7">Schuberth C</author>
                    <author order="8">Schmidt O</author>
                    <author order="9">Fernandez-Busnadiego R</author>
                    <author order="10">Bohnert M</author>
                    <title>A metabolically controlled contact site between vacuoles and lipid droplets in yeast.</title>
                    <journal_abbreviation>Dev.Cell</journal_abbreviation>
                    <country>US</country>
                    <volume>59</volume>
                    <first_page>740</first_page>
                    <last_page>758.e10</last_page>
                    <year>2024</year>
                    <external_references type="PUBMED">38367622</external_references>
                    <external_references type="DOI">doi:10.1016/j.devcel.2024.01.016</external_references>
                    <external_references type="ISSN">1534-5807</external_references>
                </journal_citation>
            </primary_citation>
        </citation_list>
        <emdb_list>
            <emdb_reference>
                <emdb_id>EMD-18896</emdb_id>
                <relationship>
                    <other>other EM volume</other>
                </relationship>
            </emdb_reference>
        </emdb_list>
    </crossreferences>
    <sample>
        <name>Lipid droplet-vacuole contact site</name>
        <supramolecule_list>
            <cell_supramolecule supramolecule_id="1">
                <name>Lipid droplet-vacuole contact site</name>
                <parent>0</parent>
                <natural_source database="NCBI">
                    <organism ncbi="4932">Saccharomyces cerevisiae</organism>
                </natural_source>
            </cell_supramolecule>
        </supramolecule_list>
    </sample>
    <structure_determination_list>
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            <method>tomography</method>
            <aggregation_state>cell</aggregation_state>
            <specimen_preparation_list>
                <tomography_preparation preparation_id="1">
                    <buffer>
                        <ph>6.5</ph>
                    </buffer>
                    <vitrification>
                        <cryogen_name>ETHANE-PROPANE</cryogen_name>
                        <chamber_humidity units="percentage">80</chamber_humidity>
                        <chamber_temperature units="K">297</chamber_temperature>
                        <instrument>FEI VITROBOT MARK IV</instrument>
                        <details>Back-blotted. </details>
                    </vitrification>
                    <details>Cells were plunge-frozen at 0.6 O.D600 concentration.</details>
                    <sectioning>
                        <focused_ion_beam>
                            <instrument>OTHER</instrument>
                            <ion>OTHER</ion>
                            <voltage>30</voltage>
                            <current>0.1</current>
                            <duration>1000</duration>
                            <temperature units="K">78</temperature>
                            <initial_thickness>4000</initial_thickness>
                            <final_thickness>200</final_thickness>
                            <details>The value given for _em_focused_ion_beam.instrument is Thermo Fisher Aquilos 2 FIB. This is not in a list of allowed values {'DB235', 'OTHER'} so OTHER is written into the XML file.</details>
                        </focused_ion_beam>
                    </sectioning>
                </tomography_preparation>
            </specimen_preparation_list>
            <microscopy_list>
                <tomography_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>
                    <c2_aperture_diameter units="µm">50.0</c2_aperture_diameter>
                    <nominal_defocus_min units="µm">5.0</nominal_defocus_min>
                    <nominal_defocus_max units="µm">6.0</nominal_defocus_max>
                    <nominal_magnification>33000.0</nominal_magnification>
                    <specimen_holder_model>FEI TITAN KRIOS AUTOGRID HOLDER</specimen_holder_model>
                    <cooling_holder_cryogen>NITROGEN</cooling_holder_cryogen>
                    <temperature>
                        <temperature_min units="K">80.0</temperature_min>
                        <temperature_max units="K">80.0</temperature_max>
                    </temperature>
                    <alignment_procedure>
                        <coma_free/>
                    </alignment_procedure>
                    <specialist_optics>
                        <energy_filter>
                            <name>TFS Selectris</name>
                            <slit_width units="eV">20</slit_width>
                        </energy_filter>
                    </specialist_optics>
                    <image_recording_list>
                        <image_recording image_recording_id="1">
                            <film_or_detector_model>FEI FALCON IV (4k x 4k)</film_or_detector_model>
                            <average_exposure_time units="s">2.8</average_exposure_time>
                            <average_electron_dose_per_image units="e/Å^2">3.0</average_electron_dose_per_image>
                        </image_recording>
                    </image_recording_list>
                </tomography_microscopy>
            </microscopy_list>
            <tomography_processing image_processing_id="1">
                <image_recording_id>1</image_recording_id>
                <final_reconstruction>
                    <software_list>
                        <software>
                            <name>IMOD</name>
                        </software>
                    </software_list>
                    <number_images_used>37</number_images_used>
                </final_reconstruction>
            </tomography_processing>
        </structure_determination>
    </structure_determination_list>
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        <symmetry>
            <space_group>1</space_group>
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        <data_type>IMAGE STORED AS FLOATING POINT NUMBER (4 BYTES)</data_type>
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            <row>1024</row>
            <sec>162</sec>
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            <row>0</row>
            <sec>-101</sec>
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        <spacing>
            <x>1024</x>
            <y>1024</y>
            <z>162</z>
        </spacing>
        <cell>
            <a units="Å">14950.4</a>
            <b units="Å">14950.4</b>
            <c units="Å">2365.2</c>
            <alpha units="deg">90.0</alpha>
            <beta units="deg">90.0</beta>
            <gamma units="deg">90.0</gamma>
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        <axis_order>
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            <medium>Y</medium>
            <slow>Z</slow>
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            <maximum>3.3536782</maximum>
            <average>0.13939676</average>
            <std>0.43831974</std>
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        <pixel_spacing>
            <x units="Å">14.6</x>
            <y units="Å">14.6</y>
            <z units="Å">14.599999</z>
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            <contour primary="true">
                <source>AUTHOR</source>
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        </contour_list>
        <label>::::EMDATABANK.org::::EMD-18897::::</label>
        <annotation_details>Lipid droplets in proximity to a vacuole in dLdo strain cell after 5-day starvation.</annotation_details>
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