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            <depositionDate>2024-11-11</depositionDate>
            <releaseDate>2025-06-11</releaseDate>
            <updateDate>2025-06-11</updateDate>
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        <title>Raw data used to generate the structure of the MIRO/TRAK complex</title>
        <correspondingAuthor private="true">
            <authorORCID>0000-0003-3186-5229</authorORCID>
            <firstName>Roberto</firstName>
            <lastName>Dominguez</lastName>
            <organization type="academic">Department of Physiology, Perelman School of Medicine, University of Pennsylvania</organization>
            <townOrCity>Philadelphia</townOrCity>
            <country>United States</country>
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            <firstName>Roberto</firstName>
            <lastName>Dominguez</lastName>
            <organization type="academic">Department of Physiology, Perelman School of Medicine, University of Pennsylvania</organization>
            <townOrCity>Philadelphia</townOrCity>
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            <author authorORCID="0000-0002-2238-1559">Baltrusaitis EE</author>
            <author authorORCID="0009-0003-2792-4166">Ravitch EE</author>
            <author authorORCID="0000-0003-0860-1639">Barrie KR</author>
            <author authorORCID="0000-0003-3186-5229">Dominguez R</author>
        </authorsList>
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                <fundingBody>National Institutes of Health (NIH)</fundingBody>
                <code>RM1 GM136511</code>
                <country>United States</country>
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        <scale>molecule</scale>
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                    <author authorORCID="0000-0002-2238-1559" order="1">Baltrusaitis EE</author>
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                    <author authorORCID="0000-0003-0860-1639" order="3">Barrie KR</author>
                    <author authorORCID="0000-0003-3186-5229" order="4">Dominguez R</author>
                    <title>Structural basis for the interaction between MIRO and TRAK for mitochondrial transport</title>
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                    <journalAbbreviation></journalAbbreviation>
                    <country></country>
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        <name>Dataset 1</name>
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        <headerFormat>TIFF</headerFormat>
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        <details>Dataset 1 containing unaligned movies (.tiff format) collected in super-resolution mode. Movies were binned by 2 during motion correction, resulting in a working pixel size of 0.86 Å/pix. The total dose was 69.8 e-/Å^2. The original gain reference is also provided (.mrc format) in 'data/Beckman_011424/gainref'.</details>
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        <details>Dataset 2 containing unaligned movies (.tiff format) collected in super-resolution mode. Movies were binned by 2 during motion correction, resulting in a working pixel size of 0.86 Å/pix. The total dose was 68.2 e-/Å^2. The original gain reference is also provided (.mrc format) in 'data/Beckman_012324/gainref'.</details>
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        <headerFormat>TIFF</headerFormat>
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        <details>Dataset 3 containing unaligned movies (.tiff format) collected in super-resolution mode. Movies were binned by 2 during motion correction, resulting in a working pixel size of 0.86 Å/pix. The total dose was 68.9 e-/Å^2. The original gain reference is also provided (.mrc format) in 'data/Beckman_021624/gainref'.</details>
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