Difference between revisions of "Team:UNITN-Trento/Results"

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Fig 3
 
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<p>Proteorhodopsin was taken from the Registry (BBa_xx) part of <a href="https://2012.igem.org/Team:Caltech" target="_blank" class="authorCite">Caltech 2012</a>. From the experience of Caltech 2012 we saw that they were not able to express and functionally characterize the part. We took the challenge to improve this part!</p>
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<p>We have built two different devices to produce Proteorhodopsin and added a RBS which was missing.<br/>
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BBa_K1604010. Proteorhodopsin producing device under the control of aracpBAD.<br />
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BBa_K16040xx. Device for the production of Proteorhodopsin and biosynthesis of retinal.</p>
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<h4 class="header4 wow fadeInDown delay05"> <span>Retinal is the key!</span> <i class="faabig flaticon-shield114"></i></h4>
 
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<p style="clear:both;">We have screened several parameters (media, temperature, time of induction) to discover  that the optimal expression conditions were in LB at 37C overnight in the presence of 10  &mu;M of all-trans retinal. Attempts to express the protein in the absence of retinal failed.  Proteorhodopsin is a membrane protein that needs the time to fold properly into the  membrane and requires retinal to bind the pocket and help the formation of the proper  folding.</p>
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<p>The expected molecular size is 28 KDa. The SDS gel shows a band corresponding to around 37 KDa, as it was seen in other studies [4]. This is probably due to post-translational modifications.</p>
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<a class="fancybox" rel="group" href="https://static.igem.org/mediawiki/2015/e/ee/Unitn_pics_results_prsds.jpg" title="Expression of Proteorhodopsin in NEB10-Beta cells"><img src="https://static.igem.org/mediawiki/2015/7/7c/Unitn_pics_results_prsds_thumb.jpg" alt="" style="width:100%; max-width:650px;"/></a>
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<p class="image_caption"><span>Expression of Proteorhodopsin</span>NEB10&beta; cells transformed with <a href="http://parts.igem.org/Part:BBa_K1604010" target="_blank">BBa_K1604010</a> and grown in LB and induced in LB or M9 with 5 mM arabinose and 10 &mu;M of retinal at 30&deg;C or 37&deg;C. Negative control were cells transformed with BBa_K731201 (i.e. araC-pBAD).</p>
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<p>We attempted also to purify the protein from the bacterial culture by sonication followed by  ultracentrifugation and we were happy to see that the purified protein was also RED, while  the negative control was not.</p>
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<p>Although LB gives the maximum expression as shown in the SDS page, we were able to  successfully express Proteorhodopsin also in M9. This result was not visible by SDS page,  but it is demonstrated by the presence of a bright red colored pellet typical of retinal bound  to Proteorhodopsin.</p>
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<p>M9 is the perfect culture media for our MFC, to maintain the correct proton equilibration  between the anodic and cathodic chambers, and maintains a more stable signal (see our  MFC results). Therefore we decided to use these growth conditions for the functional  characterization.</p>
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<a class="fancybox" rel="group" href="https://static.igem.org/mediawiki/2015/1/12/Unitn_pics_results_prfalcons.jpg" title="Purification of Proteorhodopsin. "><img src="https://static.igem.org/mediawiki/2015/2/2c/Unitn_pics_results_prfalcons_thumb.jpg" alt="" style="width:100%; max-width:800px;"/></a>
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<p class="image_caption"><span>Purification of Proteorhodopsin. </span>NEB10&beta; cells transformed with    BBa_K1604010 and BBa_K731201 were induced in LB at 37C in the presence of retinal.    The cell pellets were resuspended in 50 mM Tris-Cl pH 8 with 5 mM MgCl2 and sonicated.    The lysate was centrifuged at 10,000 rpm for 20 min at 4C. The supernatant was    ultracentrifuged for 100,000 g for 3 hours at 4C. The three tubes in front contain    proteorhodopsin purified fractions and the three tubes in the back are negative controls    treated in the same conditions</p>
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<a class="fancybox" rel="group" href="https://static.igem.org/mediawiki/2015/2/26/Unitn_pics_results_prfalcons2.jpg" title="Proteorhodopsin expression in M9"><img src="https://static.igem.org/mediawiki/2015/0/01/Unitn_pics_results_prfalcons2_thumb.jpg" alt="" style="width:100%; max-width:600px;"/></a>
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<p class="image_caption"><span>Proteorhodopsin expression in M9</span>Cells transformed with BBa_K1604010    and BBa_K731201 were grown in LB and transferred in M9 at an OD of 0.6 and induced    with arabinose with the presence of 10 &micro;M of retinal. After 6 hours of induction the cells    were centrifuged and the supernatant was discarded. From left to right: araC-pBAD    induced with retinal (A), proteorhodopsin induced with retinal (B), proteorhodopsin induced    (C) and not induced (D) both without retinal.</p>
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Revision as of 13:01, 6 September 2015

Results

  • Proteorhodopsin

  • PncB NAD Booster

Introduction to the Results

Proteorhodopsin

PncB: nicotinic acid phosphorbosyl-transferase

Our goal was to demonstrate that pncB increased intracellular levels of NAD and thus NADH. We quantified the levels of NAD by a colorimetric test that measures the levels of NAD indirectly by quantifying the concentration of NAD total (NAD + NADH) and NADH only. To make precise quantitation a standard curve with NADH was built. The test provides the ratio of NAD/NADH

NADtotal = Amount of total NAD (NAD+NADH) in unknown sample (pmole) from standard curve.
NADH = Amount of NADH in unknown sample (pmole) from standard curve.

BBa_K1604031 does increase NAD levels by 126% (2.5 fold) and NADH levels by 44% (1.4 fold) when expressed in NEB10β. Although we did see an enhancement in NAD levels, this did not correlate to a proportional boost in NADH levels. We plan in the future to add a NAD reducing enzyme and to give a medium able to enhance the cell metabolism to further increase NADH intracellular levels.