<?xml version="1.0" encoding="UTF-8"?>
<emd xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:noNamespaceSchemaLocation="https://ftp.ebi.ac.uk/pub/databases/em_ebi/emdb_related/emdb-schemas/emdb_schemas/v3/v3_0_11_0/emdb.xsd" version="3.0.11.0" emdb_id="EMD-71045">
    <admin>
        <current_status>
            <date>2025-11-26</date>
            <code>REL</code>
            <processing_site>RCSB</processing_site>
        </current_status>
        <sites>
            <deposition>RCSB</deposition>
            <last_processing>RCSB</last_processing>
        </sites>
        <key_dates>
            <deposition>2025-06-04</deposition>
            <header_release>2025-11-12</header_release>
            <map_release>2025-11-12</map_release>
            <update>2025-11-26</update>
        </key_dates>
        <grant_support>
            <grant_reference>
                <funding_body>National Institutes of Health/National Institute of General Medical Sciences (NIH/NIGMS)</funding_body>
                <code>5F32 GM149060-02</code>
                <country>United States</country>
            </grant_reference>
            <grant_reference>
                <funding_body>National Institutes of Health/National Institute of General Medical Sciences (NIH/NIGMS)</funding_body>
                <code>U24 GM129541-02</code>
                <country>United States</country>
            </grant_reference>
        </grant_support>
        <title>Consensus map of ligand-free M. sexta soluble guanylate cyclase mutant beta C122S</title>
        <authors_list>
            <author>Thomas WC</author>
            <author>Houghton KA</author>
        </authors_list>
        <keywords>Cyclase, NO, SIGNALING PROTEIN</keywords>
    </admin>
    <crossreferences>
        <citation_list>
            <primary_citation>
                <journal_citation published="true">
                    <author order="1">Houghton KA</author>
                    <author ORCID="0000-0001-5490-4900" order="2">Thomas WC</author>
                    <author ORCID="0000-0001-8715-4253" order="3">Marletta MA</author>
                    <title>Molecular Aspects of Soluble Guanylate Cyclase Activation and Stimulator Function.</title>
                    <journal_abbreviation>Biochemistry</journal_abbreviation>
                    <country>US</country>
                    <volume>64</volume>
                    <first_page>4529</first_page>
                    <last_page>4541</last_page>
                    <year>2025</year>
                    <external_references type="PUBMED">41146038</external_references>
                    <external_references type="DOI">doi:10.1021/acs.biochem.5c00424</external_references>
                    <external_references type="ISSN">0006-2960</external_references>
                    <external_references type="CSD">0033</external_references>
                    <external_references type="ASTM">BICHAW</external_references>
                </journal_citation>
            </primary_citation>
        </citation_list>
        <emdb_list>
            <emdb_reference>
                <emdb_id>EMD-70990</emdb_id>
                <relationship>
                    <other>other EM volume</other>
                </relationship>
                <details>composite map</details>
            </emdb_reference>
        </emdb_list>
        <other_db_list>
            <db_reference>
                <db_name>EMDB</db_name>
                <accession_id>EMD-71045</accession_id>
                <content_type>associated EM volume</content_type>
            </db_reference>
            <db_reference>
                <db_name>EMDB</db_name>
                <accession_id>EMD-70990</accession_id>
                <content_type>other EM volume</content_type>
                <details>composite map</details>
            </db_reference>
        </other_db_list>
    </crossreferences>
    <sample>
        <name>Ligand-free Manduca sexta soluble guanylase cyclase variant</name>
        <supramolecule_list>
            <complex_supramolecule supramolecule_id="1">
                <name>Ligand-free Manduca sexta soluble guanylase cyclase variant</name>
                <parent>0</parent>
                <macromolecule_list>
                    <macromolecule>
                        <macromolecule_id>1</macromolecule_id>
                    </macromolecule>
                </macromolecule_list>
                <details>Heterodimeric sGC molecule in the ligand-free, compact state. Beta-C122S mutant variant.</details>
                <natural_source database="NCBI">
                    <organism ncbi="7130">Manduca sexta</organism>
                </natural_source>
                <molecular_weight>
                    <theoretical units="MDa">.147</theoretical>
                </molecular_weight>
            </complex_supramolecule>
        </supramolecule_list>
        <macromolecule_list>
            <protein_or_peptide macromolecule_id="1">
                <name>M. sexta soluble guanylate cyclase</name>
                <natural_source database="NCBI">
                    <organism ncbi="7130">Manduca sexta</organism>
                </natural_source>
                <recombinant_expression database="NCBI">
                    <recombinant_organism ncbi="1491790">Spodoptera aff. frugiperda 2 RZ-2014</recombinant_organism>
                </recombinant_expression>
                <enantiomer>LEVO</enantiomer>
                <sequence>
                    <string>MTCPFRRASSQHQFANGGSSAPKKPEFRSRTSSVHLTGPEEEDGERNTLTLKHMSEALQLLTAPSNECLHAAVTSLTKNQSDHYHKYNCLRRLPDDVKTCRNYAYLQEIYDAVRATDSVNTKDFMAKLGEYLILTAFSHNCRLERAFKCLGTNLTEFLTTLDSVHDVLHDQDTPLKDETMEYEANFVCTTSQEGKIQLHLTTESEPVAYLLVGSLKAIAKRLYDTQTDIRLRSYTNDPRRFRYEINAVPLHQKSKEDSCELVNEAASVATSTKVTDLKIGVASFCKAFPWHFITDKRLELVQLGAGFMRLFGTHLATHGSSLGTYFRLLRPRGVPLDFREILKRVNTPFMFCLKMPGSTALAEGLEIKGQMVFCAESDSLLFVGSPFLDGLEGLTGRGLFISDIPLHDATRDVILVGEQARAQDGLRRRMDKLKNSIEEASKAVDKEREKNVSLLHLIFPPHIAKRLWLGEKIEAKSHDDVTMLFSDIVGFTSICATATPMMVIAMLEDLYSVFDIFCEELDVYKVETIGDAYCVASGLHRKVETHAPQIAWMALRMVETCAQHLTHEGNPIKMRIGLHTGTVLAGVVGKTMLKYCLFGHNVTLANKFESGSEPLKINVSPTTYEWLIKFPGFDMEPRDRSCLPNSFPKDIHGTCYFLHKYTHPGTDPGEPQVKHIREALKDYGIGQANSTDVDTEEPT

MYGFVNYALELLVMKTFDEETWETIKKKADVAMEGSFLVRQIYEDEITYNLITAAVEVLQIPADAILELFGKTFFEFCQDSGYDKILQVLGATPRDFLQNLDGLHDHLGTLYPGMRSPSFRSTERPEDGALVLHYYSDRPGLEHIVIGIVKTVASKLHNTEVKVEILKTKEECDHVQFLITETSTTGRVSAPEIAEIETLSLEPKVSPATFCRVFPFHLMFDRDLNIVQAGRTVSRLLPRVTRPGCKITDVLDTVRPHLEMTFANVLAHINTVYVLKTKPEEMSVTDPHEEIASLRLKGQMLYIPETDVVVFQCYPSVTNLDDLTRRGLCIADIPLHDATRDLVLMSEQFEADYKLTQNLEVLTDKLQQTFRELELEKQKTDRLLYSVLPISVATELRHRRPVPARRYDTVTLLFSGIVGFANYCARNSDHKGAMKIVRMLNDLYTAFDVLTDPKRNPNVYKVETVGDKYMAVSGLPEYEVAHAKHISLLALDMMDLSQTVTVDGEPVGITIGIHSGEVVTGVIGHRMPRYCLFGNTVNLTSRCETTGVPGTINVSEDTYNYLMREDNHDEQFELTYRGHVTMKGKAEPMQTWFLTRKIH</string>
                </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">1.5</concentration>
                    <buffer>
                        <ph>7.5</ph>
                        <component>
                            <concentration units="mM">25.0</concentration>
                            <formula>C6H15NO3</formula>
                            <name>Triethanolamine (TEA)</name>
                        </component>
                        <component>
                            <concentration units="mM">25.0</concentration>
                            <formula>NaCl</formula>
                            <name>Sodium chloride</name>
                        </component>
                        <component>
                            <concentration units="mM">5.0</concentration>
                            <formula>C4H10O2S2</formula>
                            <name>Dithiothreitol (DTT)</name>
                        </component>
                        <component>
                            <concentration units="mM">5.0</concentration>
                            <formula>MgCl2</formula>
                            <name>Magnesium chloride</name>
                        </component>
                        <component>
                            <concentration units="mM">0.5</concentration>
                            <formula>C20H25F13O11</formula>
                            <name>Fluorinated Octyl Maltoside</name>
                        </component>
                    </buffer>
                    <grid>
                        <model>Quantifoil R1.2/1.3</model>
                        <support_film film_type_id="1">
                            <film_material>CARBON</film_material>
                        </support_film>
                    </grid>
                    <vitrification>
                        <cryogen_name>ETHANE</cryogen_name>
                        <chamber_humidity units="percentage">100</chamber_humidity>
                        <chamber_temperature units="K">277</chamber_temperature>
                        <instrument>FEI VITROBOT MARK IV</instrument>
                        <details>Cryo-EM samples were prepared by applying 3 ul to a glow-discharged Quantifoil R1.2/1.3 holey-carbon cryo-EM grid. The grid was blotted for 4 s with Whatman #1 filter paper and then plunge-frozen in liquid ethane with a Mark IV Vitrobot (ThermoFisher) at 4 C and 100% humidity.. </details>
                    </vitrification>
                    <details>Samples were prepared in a Coy anaerobic chamber at RT. Protein was thawed at 4 C, reduced with 10 mM Na2S2O4 for 15 minutes at RT, and desalted using a Zeba spin column equilibrated with Buffer, 0.22 um filtered. Protein samples were then diluted to 10 uM in equivalent buffer but with addition of 0.5 mM FOM.</details>
                </single_particle_preparation>
            </specimen_preparation_list>
            <microscopy_list>
                <single_particle_microscopy microscopy_id="1">
                    <microscope>TFS 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">100.0</c2_aperture_diameter>
                    <nominal_cs units="mm">2.7</nominal_cs>
                    <nominal_defocus_min units="µm">0.5</nominal_defocus_min>
                    <nominal_defocus_max units="µm">1.5</nominal_defocus_max>
                    <specimen_holder_model>FEI TITAN KRIOS AUTOGRID HOLDER</specimen_holder_model>
                    <alignment_procedure>
                        <coma_free/>
                    </alignment_procedure>
                    <image_recording_list>
                        <image_recording image_recording_id="1">
                            <film_or_detector_model>FEI FALCON I (4k x 4k)</film_or_detector_model>
                            <number_grids_imaged>1</number_grids_imaged>
                            <number_real_images>11872</number_real_images>
                            <average_exposure_time units="s">0.2195</average_exposure_time>
                            <average_electron_dose_per_image units="e/Å^2">1.25</average_electron_dose_per_image>
                        </image_recording>
                    </image_recording_list>
                </single_particle_microscopy>
            </microscopy_list>
            <singleparticle_processing image_processing_id="1">
                <image_recording_id>1</image_recording_id>
                <particle_selection>
                    <number_selected>1226641</number_selected>
                    <details>Autopicking was used to produce a stack of 1,226,641 particles. Particles showing poor alignment or broken complexes were removed using a series of 2D classification steps, leaving a particle stack of 368,563 particles that resembled sGC dimers.</details>
                </particle_selection>
                <ctf_correction>
                    <software_list>
                        <software>
                            <name>cryoSPARC</name>
                        </software>
                    </software_list>
                    <type>PHASE FLIPPING AND AMPLITUDE CORRECTION</type>
                </ctf_correction>
                <startup_model type_of_model="INSILICO MODEL">
                    <insilico_model>The initial model of Ms sGC BC122S was built using ModelAngelo in known sequence mode and with a sharpened global 3.3 A map as a starting point.</insilico_model>
                </startup_model>
                <final_reconstruction>
                    <resolution units="Å" res_type="BY AUTHOR">3.3</resolution>
                    <resolution_method>FSC 0.143 CUT-OFF</resolution_method>
                    <software_list>
                        <software>
                            <name>cryoSPARC</name>
                        </software>
                    </software_list>
                    <details>2-class ab initio refinement and heterogeneous refinement were performed in cryoSPARC. 264,227 particles sorted into a higher resolution 3D class, on which Non-Uniform (NU) refinement was then performed. The resulting 3.3 A global map strongly resembled previous sGC structures in the ligand-free, contracted state, and the consensus map was used for initial model building.

This consensus map was then used for local (focused) refinement.</details>
                    <number_images_used>264227</number_images_used>
                </final_reconstruction>
                <initial_angle_assignment>
                    <type>MAXIMUM LIKELIHOOD</type>
                    <software_list>
                        <software>
                            <name>cryoSPARC</name>
                        </software>
                    </software_list>
                </initial_angle_assignment>
                <final_angle_assignment>
                    <type>MAXIMUM LIKELIHOOD</type>
                    <software_list>
                        <software>
                            <name>cryoSPARC</name>
                        </software>
                    </software_list>
                </final_angle_assignment>
                <final_three_d_classification>
                    <number_classes>2</number_classes>
                    <average_number_members_per_class>200000.0</average_number_members_per_class>
                    <software_list>
                        <software>
                            <name>cryoSPARC</name>
                        </software>
                    </software_list>
                    <details>After 2D classification for intact dimers, the particle stack was subjected to 2-class ab initio refinement followed by heterogeneous refinement in cryoSPARC. 264,227 particles sorted into a higher resolution 3D class, on which Non-Uniform (NU) refinement was performed. The resulting 3.3 A global map strongly resembled previous sGC structures in the ligand-free, contracted state, and the map was used for initial model building. Other refinement strategies were attempted, but did not lead to higher resolution global map densities.</details>
                </final_three_d_classification>
            </singleparticle_processing>
        </structure_determination>
    </structure_determination_list>
    <map format="CCP4" size_kbytes="131073">
        <file>emd_71045.map.gz</file>
        <symmetry>
            <space_group>1</space_group>
        </symmetry>
        <data_type>IMAGE STORED AS FLOATING POINT NUMBER (4 BYTES)</data_type>
        <dimensions>
            <col>320</col>
            <row>320</row>
            <sec>320</sec>
        </dimensions>
        <origin>
            <col>0</col>
            <row>0</row>
            <sec>0</sec>
        </origin>
        <spacing>
            <x>320</x>
            <y>320</y>
            <z>320</z>
        </spacing>
        <cell>
            <a units="Å">301.44</a>
            <b units="Å">301.44</b>
            <c units="Å">301.44</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>-8.985141</minimum>
            <maximum>14.51113</maximum>
            <average>0.003448889</average>
            <std>0.19496071</std>
        </statistics>
        <pixel_spacing>
            <x units="Å">0.94200003</x>
            <y units="Å">0.94200003</y>
            <z units="Å">0.94200003</z>
        </pixel_spacing>
        <contour_list>
            <contour primary="true">
                <level>1.51</level>
                <source>AUTHOR</source>
            </contour>
        </contour_list>
        <label>::::EMDATABANK.org::::EMD-71045::::</label>
        <annotation_details>Consensus map of ligand-free, compact M. sexta sGC bC122S</annotation_details>
    </map>
    <interpretation>
        <modelling_list>
            <modelling>
                <initial_model>
                    <chain>
                        <source_name>AlphaFold</source_name>
                        <initial_model_type>in silico model</initial_model_type>
                    </chain>
                    <details>ModelAngelo and Alphafold</details>
                </initial_model>
                <refinement_protocol>FLEXIBLE FIT</refinement_protocol>
                <details>Refinement was performed using iterative rounds of Phenix real space refinement and manual modeling in Coot. Phenix refinement was performed for separate domains of the model using the higher-resolution local maps of those domains.</details>
                <refinement_space>REAL</refinement_space>
            </modelling>
        </modelling_list>
        <half_map_list>
            <half_map format="CCP4" size_kbytes="131073">
                <file>emd_71045_half_map_1.map.gz</file>
                <symmetry>
                    <space_group>1</space_group>
                </symmetry>
                <data_type>IMAGE STORED AS FLOATING POINT NUMBER (4 BYTES)</data_type>
                <dimensions>
                    <col>320</col>
                    <row>320</row>
                    <sec>320</sec>
                </dimensions>
                <origin>
                    <col>0</col>
                    <row>0</row>
                    <sec>0</sec>
                </origin>
                <spacing>
                    <x>320</x>
                    <y>320</y>
                    <z>320</z>
                </spacing>
                <cell>
                    <a units="Å">305.28</a>
                    <b units="Å">305.28</b>
                    <c units="Å">305.28</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>-0.58647746</minimum>
                    <maximum>2.3984601</maximum>
                    <average>0.003058731</average>
                    <std>0.06283705</std>
                </statistics>
                <pixel_spacing>
                    <x units="Å">0.954</x>
                    <y units="Å">0.954</y>
                    <z units="Å">0.954</z>
                </pixel_spacing>
                <contour_list>
                    <contour primary="true">
                        <source>AUTHOR</source>
                    </contour>
                </contour_list>
                <label>::::EMDATABANK.org::::EMD-71045::::</label>
                <annotation_details>Half-map A of consensus map of ligand-free, compact M. sexta sGC bC122S</annotation_details>
            </half_map>
            <half_map format="CCP4" size_kbytes="131073">
                <file>emd_71045_half_map_2.map.gz</file>
                <symmetry>
                    <space_group>1</space_group>
                </symmetry>
                <data_type>IMAGE STORED AS FLOATING POINT NUMBER (4 BYTES)</data_type>
                <dimensions>
                    <col>320</col>
                    <row>320</row>
                    <sec>320</sec>
                </dimensions>
                <origin>
                    <col>0</col>
                    <row>0</row>
                    <sec>0</sec>
                </origin>
                <spacing>
                    <x>320</x>
                    <y>320</y>
                    <z>320</z>
                </spacing>
                <cell>
                    <a units="Å">305.28</a>
                    <b units="Å">305.28</b>
                    <c units="Å">305.28</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>-0.56764966</minimum>
                    <maximum>2.3336012</maximum>
                    <average>0.0030651079</average>
                    <std>0.062868774</std>
                </statistics>
                <pixel_spacing>
                    <x units="Å">0.954</x>
                    <y units="Å">0.954</y>
                    <z units="Å">0.954</z>
                </pixel_spacing>
                <contour_list>
                    <contour primary="true">
                        <source>AUTHOR</source>
                    </contour>
                </contour_list>
                <label>::::EMDATABANK.org::::EMD-71045::::</label>
                <annotation_details>Half-map B of consensus map of ligand-free, compact M. sexta sGC bC122S</annotation_details>
            </half_map>
        </half_map_list>
    </interpretation>
</emd>
