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| <h2>Achievements</h2> | | <h2>Achievements</h2> |
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− | <p> We were able to engineer <i> B. subtilis </i> to secret large quantities of mCherry constructs, c-terminally fused with a mini. SpyCatcher or SpyTag (Tags). In Figure 1 we assayed the fluorescence in the supernatant, that surpasses the wilde type by far. The typical red color of mCherry is even visible in the supernatant under day light conditions (Figure 2). </p> | + | <p> We were able to engineer <i> B. subtilis </i> to secret large quantities of mCherry constructs, c-terminally fused with a mini. SpyCatcher or SpyTag (Tags). In Figure 1 we assayed the fluorescence in the supernatant, that surpasses the wilde type by far. The typical red color of mCherry is even visible in the supernatant under day light conditions (Figure 2).</p> |
− | | + | <p>We demonstrated the functionality of our SpyTag/SpyCatcher system via SDS-PAGE (Figure 3). Upon 4 h of incubating the supernatants containing mCherry with either SpyTag or mini. SpyCatcher, we were able to detect the conjugated fusion protein. Thus, we provide evidence for the applicability of co-culturing approaches using Peptidosomes, to produce self conjugation protein complexes.<p> |
− | <div style="display: flex; align-items: flex-start; flex-wrap: wrap;">
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− | <div class="makeresponsive" style="width:50%;">
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− | <figure class="makeresponsive" style="padding-left:10%; padding-right:10%;">
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− | <img src="https://static.igem.org/mediawiki/2017/0/08/T--TU_Dresden--secretion--demonstrate1.png"
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− | alt="Figure 1: Endpoint measurement of the fluorescence from supernatants."
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− | class="makeresponsive zoom">
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− | <figcaption><b>Figure 1: Endpoint measurement of the fluorescence from supernatants. </b>
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− | Expression of the multi copy mCherry constructs (purple) was induced with 1% Xylose and the supernatants were harvested after 16 h of incubation. Wild type supernatant is shown as a control (pink). Excitation wavelength was set to 585 nm and emission was recorded at 615 nm. The fluorecense was normalized over the optical density of the cell culture at 600 nm (OD600). Graph shows mean values and standard deviations of at least two biological and three technical replicates.
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− | </figcaption>
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− | </figure>
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− | </div>
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− | <div class="makeresponsive" style="width:50%;">
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− | <figure class="makeresponsive floatleft" style="padding-left:10%; padding-right:10%;">
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− | <img src="https://static.igem.org/mediawiki/2017/b/b7/T--TU_Dresden--secretion--results5.png"
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− | alt="Figure 2: Supernatants of <i>B. subtilis</i> cultures."
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− | class="makeresponsive zoom">
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− | <figcaption><b>Figure 2: Supernatants of <i><b>B. subtilis</b> </i>cultures.</b>
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− | Wild-type supernatant (left) and a mCherry-mini. SpyCatcher secreting strain (right). The expression of the multi-copy mCherry was induced with 1% Xylose and the supernatant was harvested after 16 h of incubation.
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− | </figcaption>
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− | </figure>
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− | </div>
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− | </div>
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− | <p></p>
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− | <p>We demonstrated the functionality of our SpyTag/SpyCatcher system via SDS-PAGE (Figure 3). Upon 4 h of incubating the supernatants containing mCherry with either SpyTag or mini. SpyCatcher, we were able to detect the conjugated fusion protein. Thus, we provide evidence for the applicability of co-culturing approaches using Peptidosomes, to produce self conjugation protein complexes. <p> | + | |
− | <figure class="makeresponsive"; style="padding-left:20%; padding-right:20%" >
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− | <img src="https://static.igem.org/mediawiki/2017/b/bb/T--TU_Dresden--secretion--results7.png"
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− | alt="Figure 3: SDS gel with crude and purified supernatants. " class="zoom">
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− | <figcaption><b>Figure 3: SDS gel with crude and purified supernatants.</b> Expression of the multi copy mCherry constructs was induced with 1% Xylose and the supernatants were harvested after 16 h of incubation. The his-tagged proteins were purified with Ni-NTA agarose beads. Lane 1 was loaded with 3 l of NEB´s “Color Prestained Protein Standard Broad Range” ladder. Crude (c) and purified (p) supernatant of wild-type (WT) are shown as a control in lane 2 and 3. Lane 4 and 5 contain the supernatant of <i>B. subtilis</i> producing mCherry-mini. SpyCatcher fusion protein (36,6 kDa). Lane 4 and 5 contain the supernatant of <i>B. subtilis</i> producing mCherry-SpyTag fusion protein (31,9 kDa). The crude supernatants of the two mCherry producing strains were combined, incubated for 4 h, purified and loaded onto lane 8 and 9. The fusion product of the mCherry constructs is visable in the crude and purified supernatant.
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− | </figcaption>
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− | </figure>
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| <figure> | | <figure> |