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            <header_release>2025-12-17</header_release>
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            <update>2026-03-04</update>
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                <funding_body>Other government</funding_body>
                <code>24ZR1403800</code>
                <country>China</country>
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            <grant_reference>
                <funding_body>Japan Science and Technology</funding_body>
                <code>JPMJPR20E1</code>
                <country>Japan</country>
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        <title>Tomogram of doublet microtubules with bound dynein-2 molecules</title>
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            <author ORCID="0009-0003-8300-7354">He HK</author>
            <author ORCID="0009-0000-1206-6371">Chen X</author>
            <author ORCID="0009-0005-8292-5764">Lv QH</author>
            <author ORCID="0000-0002-5921-7699">Ichikawa M</author>
        </authors_list>
        <keywords>cilia, intraflagellar transport, doublet microtubule, dynein-2, MOTOR PROTEIN</keywords>
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                    <author ORCID="0009-0003-8300-7354" order="1">He HK</author>
                    <author order="2">Kubo S</author>
                    <author order="3">Chen X</author>
                    <author order="4">Lv QH</author>
                    <author order="5">Kage A</author>
                    <author ORCID="0000-0002-5921-7699" order="6">Ichikawa M</author>
                    <title>Cryo-ET and MD simulations reveal that dynein-2 is tuned for binding to the A-tubule of the ciliary doublet.</title>
                    <journal_abbreviation>Embo J.</journal_abbreviation>
                    <country>UK</country>
                    <volume>44</volume>
                    <first_page>7677</first_page>
                    <last_page>7701</last_page>
                    <year>2025</year>
                    <external_references type="PUBMED">41299077</external_references>
                    <external_references type="DOI">doi:10.1038/s44318-025-00648-1</external_references>
                    <external_references type="ISSN">1460-2075</external_references>
                    <external_references type="CSD">0897</external_references>
                    <external_references type="ASTM">EMJODG</external_references>
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                <natural_source database="NCBI">
                    <organism ncbi="5911">Tetrahymena thermophila</organism>
                    <strain>SB255</strain>
                    <cellular_location>Cilia</cellular_location>
                </natural_source>
            </complex_supramolecule>
            <complex_supramolecule supramolecule_id="2">
                <name>SNAP-GST-Dyn2</name>
                <parent>1</parent>
                <details>Dynein-2 heavy chain's N-terminal tail domain was truncated and replaced with GST-tag for dimerization. There is also SNAP-tag attached at the N-terminal side.</details>
                <natural_source database="NCBI">
                    <organism ncbi="9606">Homo sapiens</organism>
                    <cellular_location>Cilia</cellular_location>
                </natural_source>
            </complex_supramolecule>
            <organelle_or_cellular_component_supramolecule supramolecule_id="3">
                <name>Doublet microtubules</name>
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                <natural_source database="NCBI">
                    <organism ncbi="5911">Tetrahymena thermophila</organism>
                    <strain>SB255</strain>
                    <organelle>Cilia</organelle>
                </natural_source>
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                            <type>GLOW DISCHARGE</type>
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                            <manufacturer>Sigma-Aldrich</manufacturer>
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                    <nominal_defocus_max units="µm">0.5</nominal_defocus_max>
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                            <name>IMOD</name>
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