Difference between revisions of "Team:Queens Canada/AFP Scaffold"
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<figcaption>Figure 1.<strong>Ice crystal shapes and AFP concentrations <sup>5</sup>.</strong> <strong>(A)</strong> No/Low concentration of AFPs: large ice crystals form from no/limited ice curvature<sup>6</sup>.<strong>(B)</strong>Optimal AFP concentration: Type III AFP forms hexagonal bipyramidal crystals the create ice curvature to inhibit growth. <strong>(C)</strong> High AFP concentration: excessive curvature makes it difficult for water molecules to bind however sharp, needle-like crystals form<sup>7</sup> and penetrate cell membranes<sup>2</sup>.</figcaption> | <figcaption>Figure 1.<strong>Ice crystal shapes and AFP concentrations <sup>5</sup>.</strong> <strong>(A)</strong> No/Low concentration of AFPs: large ice crystals form from no/limited ice curvature<sup>6</sup>.<strong>(B)</strong>Optimal AFP concentration: Type III AFP forms hexagonal bipyramidal crystals the create ice curvature to inhibit growth. <strong>(C)</strong> High AFP concentration: excessive curvature makes it difficult for water molecules to bind however sharp, needle-like crystals form<sup>7</sup> and penetrate cell membranes<sup>2</sup>.</figcaption> | ||
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<figcaption>Figure 5. <strong>Ice affinity purification of AFP-E coil.</strong>The supernatant represents the pre-shell supernatant lysate from protein expression. The first round of ice affinity purification included the incorporation of a number of components into the ice fraction. The second round of purification left the predominant component as the AFP with the attached E coil.</figcaption> | <figcaption>Figure 5. <strong>Ice affinity purification of AFP-E coil.</strong>The supernatant represents the pre-shell supernatant lysate from protein expression. The first round of ice affinity purification included the incorporation of a number of components into the ice fraction. The second round of purification left the predominant component as the AFP with the attached E coil.</figcaption> | ||
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<figcaption>Figure 6. <strong>Visualization of the slight difference in size between the wild-type AFP and the AFP-Ecoil.</strong></figcaption> | <figcaption>Figure 6. <strong>Visualization of the slight difference in size between the wild-type AFP and the AFP-Ecoil.</strong></figcaption> | ||
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<figcaption>Figure 6. <strong>Unmodified T3-10 SDS-PAGE gel.</strong>The entire protocol was performed to check expression, purification, and assembly of the scaffold. </figcaption> | <figcaption>Figure 6. <strong>Unmodified T3-10 SDS-PAGE gel.</strong>The entire protocol was performed to check expression, purification, and assembly of the scaffold. </figcaption> | ||
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<figcaption>Figure 7. <strong>Unmodified T3-10 size exclusion chromatogram.</strong></figcaption> | <figcaption>Figure 7. <strong>Unmodified T3-10 size exclusion chromatogram.</strong></figcaption> | ||
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Revision as of 01:17, 17 September 2015