Team:LCG-UNAM-Mexico/Notebook/2008-October
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- | <td class="bodyText"><div align="justify"><strong>WET LAB</strong> | + | <td class="bodyText"><div align="justify"> <strong>WET LAB</strong> |
<p>We ran a 1% agarose gel to verify the extraction.<br /> | <p>We ran a 1% agarose gel to verify the extraction.<br /> | ||
<img src="https://static.igem.org/mediawiki/2008/7/7a/Extraccion_nene_1010108.jpg" alt="NENE_V" width="400" /><br /> | <img src="https://static.igem.org/mediawiki/2008/7/7a/Extraccion_nene_1010108.jpg" alt="NENE_V" width="400" /><br /> | ||
The vector with rcnA was double-digested in order to verify the correct ligation of the fragments.<br /> | The vector with rcnA was double-digested in order to verify the correct ligation of the fragments.<br /> | ||
A 1% agarose gel was made to see the digested vector.<br /> | A 1% agarose gel was made to see the digested vector.<br /> | ||
- | < | + | <img src="https://static.igem.org/mediawiki/2008/5/5b/101008_rcnArest_plasmido_bueno.PNG" alt="Gel enen" width="247" height="349" /><br /> |
The pBBR1MCs-5/rcnA was used to transform W3110/YohM- competent cells by Heat shock. The transformed cells were plated on LBGm20 agar plates and incubated at 37°C the whole night.</p></div></td> | The pBBR1MCs-5/rcnA was used to transform W3110/YohM- competent cells by Heat shock. The transformed cells were plated on LBGm20 agar plates and incubated at 37°C the whole night.</p></div></td> | ||
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- | <td class="bodyText"><div align="justify"><strong>WET LAB</strong> | + | <td class="bodyText"><div align="justify"><p><strong>WET LAB</strong></p> |
- | <p>The W3110/YohM-/pBBR1MCs-5/rcnA colonies were streaked on LBGm20 agar plates and incubated the whole night at 37°C.</p></div></td> | + | <p>The W3110/YohM-/pBBR1MCs-5/rcnA colonies were streaked on LBGm20 agar plates and incubated the whole night at 37°C.<br /> |
+ | The planning for the measurements was completed and ready to start. <br /> | ||
+ | The propose for the determination of nickel internalization considerates to assume that when the medium has certain nickel concentration, the presence of cells from different strains will cause a variation in the resistivity(which, by the way will affect conductivity). For the different strains that we are using, we expect: </p> | ||
+ | <table border="1" cellspacing="0" cellpadding="0"> | ||
+ | <tr> | ||
+ | <td width="272" valign="top"><p>Strain </p></td> | ||
+ | <td width="440" valign="top"><p>Changes expected </p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td width="272" valign="top"><p>W3110 / YohM- </p></td> | ||
+ | <td width="440" valign="top"><p>As this strain doesn’t carry the efflux pump RcnA. We expect that the resistivity will increase due to the nickel internalization. </p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td width="272" valign="top"><p>W3110 / YohM- pBBIMRCS-5 </p></td> | ||
+ | <td width="440" valign="top"><p>We expect a similar performance of these cells compared with W3110 / YohM-. However the extrusion pump for gentamicine present in the plasmid could be adding variation to the system. </p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td width="272" valign="top"><p>W3110 / YohM- pBBIMRCS-5 RcnA </p></td> | ||
+ | <td width="440" valign="top"><p>This cells carry the pBBIMRCS-5 plasmid with the efflux pump RcnA. Here, we expect oscillations due to the presence of a pump which internalizes nickel and the efflux pump. </p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td width="272" valign="top"><p>W3110 / YohM+ </p></td> | ||
+ | <td width="440" valign="top"><p>We expect a similar behavior to the one observed in W3110 / YohM- pBBIMRCS-5 RcnA. </p></td> | ||
+ | </tr> | ||
+ | </table> | ||
+ | <p>The two known critical concentrations of NiSO4 are 2.2 mM, the minimum inhibitory, and 500uM the minimun needed to repress RcnR activity. <br /> | ||
+ | Planned methodology: <br /> | ||
+ | -Establishment of a place to do the measurements. <br /> | ||
+ | -We expect to have a constant temperature during the measurement process. <br /> | ||
+ | -Test the sensitivity of the measurement dispositive. To achieve this, measurements will be done in agitation of: </p> | ||
+ | <ul> | ||
+ | <ul> | ||
+ | <ul> | ||
+ | <ul> | ||
+ | <li>Just LB </li> | ||
+ | <li>LB with NiSO4 </li> | ||
+ | <li>LB with cells </li> | ||
+ | </ul> | ||
+ | </ul> | ||
+ | </ul> | ||
+ | </ul> | ||
+ | <p> </p> | ||
+ | <div align="center"> | ||
+ | <table border="1" cellspacing="0" cellpadding="0" width="273"> | ||
+ | <tr> | ||
+ | <td width="50%"><p>Molarity</p></td> | ||
+ | <td width="49%"><p>NiSO4 μl from a solution 0.1M</p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td width="50%"><p>0,0022 </p></td> | ||
+ | <td width="49%"><p>22</p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td width="50%"><p>0,001 </p></td> | ||
+ | <td width="49%"><p>10</p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td width="50%"><p>0,0001 </p></td> | ||
+ | <td width="49%"><p>1</p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td width="50%"><p>0,00001 </p></td> | ||
+ | <td width="49%"><p>10</p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td width="50%"><p>0,000001 </p></td> | ||
+ | <td width="49%"><p>1</p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td width="50%"><p>0,0000001 </p></td> | ||
+ | <td width="49%"><p>10</p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td width="50%"><p>0,00000001 </p></td> | ||
+ | <td width="49%"><p>1</p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td width="50%"><p>0,000000001 </p></td> | ||
+ | <td width="49%"><p>10</p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td width="50%"><p>1E-10 </p></td> | ||
+ | <td width="49%"><p>1</p></td> | ||
+ | </tr> | ||
+ | </table> | ||
+ | </div> | ||
+ | <ul> | ||
+ | <ul> | ||
+ | <ul> | ||
+ | <ul> | ||
+ | <ul> | ||
+ | <li>(,001) Dilución de 10 microlitros de 0.1 M en 1 mililitro </li> | ||
+ | <li>(,00001) Dilución de 10 microlitros de 0.001M en 1 mililitro </li> | ||
+ | <li>(0,0000001) Dilución de 10 microlitros de 0.00001 M en un mililitro </li> | ||
+ | </ul> | ||
+ | </ul> | ||
+ | </ul> | ||
+ | </ul> | ||
+ | </ul> | ||
+ | <p>Internalization </p> | ||
+ | <p>-Grow the strain YohM- in LB medium until reach an OD(optical density) of 0.4 to ensure that the cells are in exponential phase. (Later this was changed to an OD of 0.5 at a lambda of 600nm). </p> | ||
+ | <p>-Plot concentration vs time and calculate the slope <br /> | ||
+ | slope= Internalization rate of Ni2+ </p> | ||
+ | <p>Extrusion<br /> | ||
+ | The following steps were performed in order to prove the RcnA activity, and to get the enough data to calculate conductivity from the resistivity measurements. These conductivity data will be useful to get the extrusion rate of RcnA.</p> | ||
+ | <p>- Grow the strains YohM-, YohM- + pBBMICS-5+RcnA, YohM- + pBBMICS-5 and YohM+ in LB medium until reach an OD(optical density) of 0.4 to ensure that the cells are in exponential phase. (Later this was changed to an OD of 0.5 at a lambda of 600nm).<br /> | ||
+ | - Take 1ml from each culture for each of the next nickel concentrations: </p> | ||
+ | <table border="1" cellspacing="0" cellpadding="0" align="left"> | ||
+ | <tr> | ||
+ | <td valign="top"><p>Molarity</p></td> | ||
+ | <td valign="top"><p>Grams</p></td> | ||
+ | <td valign="top"><p>Conductivity</p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td valign="top"><p>0,0022 </p></td> | ||
+ | <td valign="top"><p>0,3404368 </p></td> | ||
+ | <td valign="top"><p>3,4375E-06 </p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td valign="top"><p>0,001 </p></td> | ||
+ | <td valign="top"><p>0,154744 </p></td> | ||
+ | <td valign="top"><p>1,5625E-06 </p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td valign="top"><p>0,0001 </p></td> | ||
+ | <td valign="top"><p>0,0154744 </p></td> | ||
+ | <td valign="top"><p>1,5625E-07 </p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td valign="top"><p>0,00001 </p></td> | ||
+ | <td valign="top"><p>0,00154744 </p></td> | ||
+ | <td valign="top"><p>1,5625E-08 </p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td valign="top"><p>0,000001 </p></td> | ||
+ | <td valign="top"><p>0,000154744 </p></td> | ||
+ | <td valign="top"><p>1,5625E-09 </p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td valign="top"><p>0,0000001 </p></td> | ||
+ | <td valign="top"><p>1,54744E-05 </p></td> | ||
+ | <td valign="top"><p>1,5625E-10 </p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td valign="top"><p>0,00000001 </p></td> | ||
+ | <td valign="top"><p>1,54744E-06 </p></td> | ||
+ | <td valign="top"><p>1,5625E-11 </p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td valign="top"><p>0,000000001 </p></td> | ||
+ | <td valign="top"><p>1,54744E-07 </p></td> | ||
+ | <td valign="top"><p>1,5625E-12 </p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td valign="top"><p>1E-10 </p></td> | ||
+ | <td valign="top"><p>1,54744E-08 </p></td> | ||
+ | <td valign="top"><p>1,5625E-13 </p></td> | ||
+ | </tr> | ||
+ | </table> | ||
+ | <p><br clear="all" /> | ||
+ | <br /> | ||
+ | - The measurements will be performed during three minutes for each one strain</p></div></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td class="subHeader" bgcolor="#99CC66" id="12">2008-10-12</td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td class="bodyText"><div align="justify"> <p> <strong>WET LAB</strong><br /> | ||
+ | Some measurements were done in LB with and without nickel in order to calibrate and prove the apparatus. Initially the measurement dispositive included a gold electrode which seemed to be working properly.</p> | ||
+ | </div></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td class="subHeader" bgcolor="#99CC66" id="13">2008-10-13</td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td class="bodyText"><div align="justify"><p><strong>WET LAB</strong></p> | ||
+ | <p>Solutions nickel 500uM and without nickel at all were prepared from samples of LB, and the strains YohM-, YohM- + pBBIMRCS-5 and YohM- + pBBIMRCS-5 + RcnA. </p> | ||
+ | </div></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td class="subHeader" bgcolor="#99CC66" id="14">2008-10-14</td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td class="bodyText"><div align="justify"><p><strong>WET LAB</strong><br /> | ||
+ | The OD that the cells must reach was changed to 0.5 at a lambda of 600nm(This was due to the finding of the proper OD measurement in the strain W3110). <br /> | ||
+ | Some adjusts were done to the measurement dispositive in order to increase its sensibility.</p> | ||
+ | </div></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td class="subHeader" bgcolor="#99CC66" id="15">2008-10-15</td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td class="bodyText"><div align="justify"><p><strong>WET LAB</strong><br /> | ||
+ | Preparation of the strains YohM-, YohM- + pBBIMRCS-5, and YohM- + pBBIMRCS-5 + RcnA for the measurements. An overnight of each strain was grown in LB. Samples of YohM- + pBBIMRCS-5, and YohM- + pBBIMRCS-5 + RcnA were prepared with different concentrations of NiSO4 . That concentrations includes a gradient from 1x10-3 M – 1X10-10M. And the two critical concentrations 500uM and 2.2mM.</p> | ||
+ | </div></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td class="subHeader" bgcolor="#99CC66" id="16">2008-10-16</td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td class="bodyText"><div align="justify"><p><strong>WET LAB</strong><br /> | ||
+ | Strains were prepared in pursuit to perform some new measurements. Samples of LB, LB+ sulfate, and YohM-+RCNA+PBB were read. <br /> | ||
+ | Measurement intervals (100 milliseconds) semeed to be quite large, so its correction was proposed. </p> | ||
+ | </div></td> | ||
</tr> | </tr> | ||
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</div></td> | </div></td> | ||
</tr> | </tr> | ||
+ | <tr> | ||
+ | <td class="subHeader" bgcolor="#99CC66" id="18">2008-10-18</td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td class="bodyText"><div align="justify"><p><strong>WET LAB</strong><br /> | ||
+ | Prosecution of correction of measurement intervals. </p></div></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td class="subHeader" bgcolor="#99CC66" id="19">2008-10-19</td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td class="bodyText"><div align="justify"><p> | ||
+ | <strong>WET LAB</strong><br /> | ||
+ | Due to the great variation observed in the data, some aspects of the samples, measurements and electrodes were reconsidered. As the variations could be caused by the ions present in the medium it was proposed to use a buffer instead of LB medium. </p></div></td> | ||
+ | </tr> | ||
+ | |||
+ | |||
<tr> | <tr> | ||
<td class="subHeader" bgcolor="#99CC66" id="20">2008-10-20</td> | <td class="subHeader" bgcolor="#99CC66" id="20">2008-10-20</td> | ||
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</p> | </p> | ||
<p> The columns of <i>U </i>are called the <em>left singular vectors </em>and the columns of <i>V </i>are the <em>right singular vectors</em>. The columns of <i>U </i>and <i>V </i>give orthonormal bases for all the four fundamental subspaces of <i>S </i>(see Figure 8.3). The first <em>r </em> columns of <i>U </i>and <i>V </i>give orthonormal bases for the column and row spaces, respectively. The last<em>m</em>− <em>r </em>columns of <i>U </i>give an orthonormal basis for the left null space, and the last <em>n </em>− <em>r </em>columns or <i>V </i>give an orthonormal basis for the null space.</p> | <p> The columns of <i>U </i>are called the <em>left singular vectors </em>and the columns of <i>V </i>are the <em>right singular vectors</em>. The columns of <i>U </i>and <i>V </i>give orthonormal bases for all the four fundamental subspaces of <i>S </i>(see Figure 8.3). The first <em>r </em> columns of <i>U </i>and <i>V </i>give orthonormal bases for the column and row spaces, respectively. The last<em>m</em>− <em>r </em>columns of <i>U </i>give an orthonormal basis for the left null space, and the last <em>n </em>− <em>r </em>columns or <i>V </i>give an orthonormal basis for the null space.</p> | ||
- | + | <p><strong>WET LAB</strong><br /> | |
+ | Correction of the measurement intervals to 1 millisecond. <br /> | ||
+ | 161008 <br /></p> </div></td> | ||
</tr> | </tr> | ||
<tr> | <tr> |
Latest revision as of 02:44, 30 October 2008
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