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            <depositionDate>2022-09-14</depositionDate>
            <releaseDate>2023-02-01</releaseDate>
            <updateDate>2023-02-01</updateDate>
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        <title>Single particle cryogenic electron micrographs of respiratory supercomplex I+III2 from Vigna radiata</title>
        <correspondingAuthor>
            <authorORCID>0000-0002-9864-3586</authorORCID>
            <firstName>James</firstName>
            <lastName>Letts</lastName>
            <organization type="academic">Department of Molecular and Cellular Biology, University of California - Davis</organization>
            <street>1 Shields Ave</street>
            <townOrCity>Davis</townOrCity>
            <stateOrProvince>California</stateOrProvince>
            <country>United States</country>
            <postOrZipCode>95616</postOrZipCode>
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        <principalInvestigator>
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            <firstName>James</firstName>
            <lastName>Letts</lastName>
            <organization type="academic">Department of Molecular and Cellular Biology, University of California - Davis</organization>
            <street>1 Shields Ave</street>
            <townOrCity>Davis</townOrCity>
            <stateOrProvince>California</stateOrProvince>
            <country>United States</country>
            <postOrZipCode>95616</postOrZipCode>
        </principalInvestigator>
        <authorsList>
            <author authorORCID="0000-0002-3428-1053">Maldonado M</author>
            <author authorORCID="0000-0002-9864-3586">Letts JA</author>
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        <entryDOI>10.6019/EMPIAR-11225</entryDOI>
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        <scale>molecule</scale>
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            <emdbEntry>EMD-27934</emdbEntry>
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                    <author authorORCID="0000-0002-3428-1053" order="1">Maldonado M</author>
                    <author authorORCID="0000-0001-6055-5604" order="2">Abe KM</author>
                    <author authorORCID="0000-0003-3793-2445" order="3">Fan Z</author>
                    <author authorORCID="0000-0002-9864-3586" order="4">Letts JA</author>
                    <title>Plant-specific features of respiratory supercomplex I + III&lt;sub&gt;2&lt;/sub&gt; from Vigna radiata</title>
                    <journal>Nature plants</journal>
                    <journalAbbreviation>Nat Plants</journalAbbreviation>
                    <country></country>
                    <issue>1</issue>
                    <volume>9</volume>
                    <firstPage>157</firstPage>
                    <lastPage>168</lastPage>
                    <year>2022</year>
                    <language>English</language>
                    <externalReferences type="doi">10.1038/s41477-022-01306-8</externalReferences>
                    <externalReferences type="pubmed">36581760</externalReferences>
                    <details>These are the raw micrograph movies collected  on a 200 kV Thermofisher Glacios microscope equiped with a Gatan Quantum K3 detector at a nominal magnification of 56,818 (0.44 Å/pixel under super-resolution mode). A dose of 20 electrons/Å2/s with 3-second exposure was fractionated into 75 frames for each movie.</details>
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        <name>Unaligned multi-frame micrographs of Vigna radiata mitochondrial respiratory supercomplex I+III2 - Data Set 1</name>
        <directory>/data/20220401_MM_VrSCI-III-prep7</directory>
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        <framesPerImage>75</framesPerImage>
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        <details>Unaligned multi-frame micrographs of Vigna radiata mitochondrial respiratory supercomplex I+III2. A total of 8227 movies were collected using SerialEM on a 200 kV ThermoFisher Glacios microscope equipped with a Gatan Quantum K3 detector, at a nominal magnification of 56,818 (0.44 Å/pixel under super-resolution mode). A dose of 20 electrons/Å2/s with 3-second exposure was fractionated into 75 frames for each movie. This is the first of two dataset that were subsequently combined for structure calculation.</details>
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        <details>Unaligned multi-frame micrographs of Vigna radiata mitochondrial respiratory supercomplex I+III2. A total of 8227 movies were collected using SerialEM on a 200 kV ThermoFisher Glacios microscope equipped with a Gatan Quantum K3 detector, at a nominal magnification of 56,818 (0.44 Å/pixel under super-resolution mode). A dose of 20 electrons/Å2/s with 3-second exposure was fractionated into 75 frames for each movie. This is the second of two dataset that were subsequently combined for structure calculation</details>
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