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Mimicry of the Proton Wire Mechanism of Enzymes Inside a Supramolecular Capsule Enables β-Selective O-Glycosylations

<p>Data underlying the figures in the publication &ldquo;Mimicry of the proton wire mechanism of enzymes inside a supramolecular capsule enables &beta;-selective O-glycosylations&rdquo;, published in <em>Nature Chemistry</em>.</p> <p>Table of contents:</p> <p><strong>1. Figure 1</strong>: An editable chemdraw graphic of <em>Figure 1</em>.</p> <p><strong>2. Figure 2</strong>: .zip archive containing an editable chemdraw graphic of <em>Figure 2</em>, and NMR spectra of compounds 7 and 9.</p> <p><strong>3. Figure 3</strong>: .zip archive containing an editable chemdraw graphic of <em>Figure 3</em>, and source data underlying <em>Figures 3a</em>, <em>3c</em> and <em>3d</em>.</p> <p><strong>4. Figure 4</strong>: .zip archive containing an editable chemdraw graphic of <em>Figure 4</em>, NMR spectra of <em>Figure 4c</em> and source data underlying <em>Figures 4d</em> and <em>4e</em>.</p> <p><strong>5. Figure 5</strong>: .zip archive containing an editable chemdraw graphic of <em>Figure 5</em>, and NMR spectra of compounds 26-31, S8 and S9.</p> <p><strong>6. Table 1</strong>: .zip archive containing an editable chemdraw graphic of <em>Table 1</em>, and NMR spectra of all compounds shown in <em>Table 1</em>.</p>

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32/100

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These five areas show where the dataset supports — or may limit — practical reuse.

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8
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4
Access
16
Reuse readiness
4
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0

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