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            <depositionDate>2022-12-06</depositionDate>
            <releaseDate>2023-09-26</releaseDate>
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        <title>Single particle cryo-EM dataset of human nucleolar and nuclear pre-60S assembly intermediates</title>
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            <firstName>Arnaud</firstName>
            <lastName>Vanden Broeck</lastName>
            <organization type="academic">Laboratory of Protein and Nucleic Acid Chemistry, The Rockefeller University</organization>
            <street>1230 York Avenue</street>
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            <firstName>Sebastian</firstName>
            <lastName>Klinge</lastName>
            <organization type="academic">Laboratory of Protein and Nucleic Acid Chemistry, The Rockefeller University</organization>
            <street>1230 York Avenue</street>
            <townOrCity>New York</townOrCity>
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            <country>United States</country>
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            <author authorORCID="0000-0003-0930-4249">Vanden Broeck A</author>
            <author authorORCID="0000-0002-9373-4737">Klinge S</author>
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                <fundingBody>European Molecular Biology Organization (EMBO)</fundingBody>
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                <country>Germany</country>
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                <fundingBody>The G. Harold and Leila Y. Mathers Foundation</fundingBody>
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                <country>United States</country>
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        <entryDOI>10.6019/EMPIAR-11472</entryDOI>
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                    <author authorORCID="0000-0003-0930-4249" order="1">Vanden Broeck A</author>
                    <author authorORCID="0000-0002-9373-4737" order="2">Klinge S</author>
                    <title>Principles of human pre-60&lt;i&gt;S&lt;/i&gt; biogenesis</title>
                    <journal>Science (New York, N.Y.)</journal>
                    <journalAbbreviation>Science</journalAbbreviation>
                    <country></country>
                    <issue>6653</issue>
                    <volume>381</volume>
                    <year>2023</year>
                    <language>English</language>
                    <externalReferences type="doi">10.1126/science.adh3892</externalReferences>
                    <externalReferences type="pubmed">37410842</externalReferences>
                </journalCitation>
            </universalCitation>
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    <imageSet>
        <name>Unaligned multi-frame micrographs of human nucleolar and nuclear pre-60S assembly intermediates - Dataset 1</name>
        <directory>/data/Tifs_DS1_MK67I-GFP</directory>
        <category>micrographs - multiframe</category>
        <headerFormat>TIFF</headerFormat>
        <dataFormat>TIFF</dataFormat>
        <numImagesOrTiltSeries>44352</numImagesOrTiltSeries>
        <framesPerImage>40</framesPerImage>
        <frameRange>
            <frameRangeMin>1</frameRangeMin>
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        <voxelType>UNSIGNED BYTE</voxelType>
        <dimensions>
            <imageWidth>11520</imageWidth>
            <pixelWidth>0.54</pixelWidth>
            <imageHeight>8184</imageHeight>
            <pixelHeight>0.54</pixelHeight>
        </dimensions>
        <details>The dataset was collected on a Titan Krios electron microscope operating at 300 kV equipped with an energy filter (slit width 20 eV), a Cs corrector and a K3 Summit detector set in super-resolution mode. Unaligned multi-frame micrographs were recorded at a nominal magnification of 64,000× with a pixel size of 0.54 Å/pixel, a defocus range of -0.5 to -2.5 µm, and a total dose of 60.0 e-/Å2 (40 frames). The gain reference was applied on-the-fly during data collection.</details>
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        <directory>/data/Tifs_DS2_MK67I-GFP</directory>
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            <frameRangeMin>1</frameRangeMin>
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        <voxelType>UNSIGNED BYTE</voxelType>
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            <imageWidth>11520</imageWidth>
            <pixelWidth>0.54</pixelWidth>
            <imageHeight>8184</imageHeight>
            <pixelHeight>0.54</pixelHeight>
        </dimensions>
        <details>The dataset was collected on a Titan Krios electron microscope operating at 300 kV equipped with an energy filter (slit width 20 eV), a Cs corrector and a K3 Summit detector set in super-resolution mode. Unaligned multi-frame micrographs were recorded at a nominal magnification of 64,000× with a pixel size of 0.54 Å/pixel, a defocus range of -0.5 to -2.5 µm, and a total dose of 60.0 e-/Å2 (40 frames). The gain reference was applied on-the-fly during data collection.</details>
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            <imageWidth>11520</imageWidth>
            <pixelWidth>0.54</pixelWidth>
            <imageHeight>8184</imageHeight>
            <pixelHeight>0.54</pixelHeight>
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        <details>The dataset was collected on a Titan Krios electron microscope operating at 300 kV equipped with an energy filter (slit width 20 eV), a Cs corrector and a K3 Summit detector set in super-resolution mode. Unaligned multi-frame micrographs were recorded at a nominal magnification of 64,000× with a pixel size of 0.54 Å/pixel, a defocus range of -0.5 to -2.5 µm, and a total dose of 60.0 e-/Å2 (40 frames). The gain reference was applied on-the-fly during data collection.</details>
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        <details>Merged set of pre-60S particles from four datasets. Particles are polished, magnification anisotropy corrected and per-particle defocus corrected. A Relion .star format file is provided and contains the final Euler angles, shifts and also the micrograph coordinates.</details>
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