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<center style = "font-size:200%; color:#0071A7;">Signal Integration Components</center> | <center style = "font-size:200%; color:#0071A7;">Signal Integration Components</center> | ||
− | <p style = "font-size:150%; padding:25px 150px 20px 150px; color:#0071A7;">Finally, once we completed phase one and two, we expanded our system once again. We utilized the recombinase system BLADE. BLADE allows for digital activation of different genes by using inducible recombinase proteins to excise DNA. When different combinations of recombinases are activated, different combinations of DNA are excised. Based on what parts of the circuit are excised decides which one of several gRNA's to release. Once a gRNA is released, it will bind to a dCAS9-VPR and guide the activator to the gene with the corresponding operator. When a new combination of recombinases are activated, a different gRNA is released, guiding the activator to a different gene. The results of BLADE can be seen in the graph below. | + | <p style = "font-size:150%; padding:25px 150px 20px 150px; color:#0071A7;">Finally, once we completed phase one and two, we expanded our system once again. We utilized the recombinase system BLADE. BLADE allows for digital activation of different genes by using inducible recombinase proteins to excise DNA. When different combinations of recombinases are activated by digital signals, different combinations of DNA are excised. Based on what parts of the circuit are excised decides which one of several gRNA's to release. Once a gRNA is released, it will bind to a dCAS9-VPR and guide the activator to the gene with the corresponding operator. When a new combination of recombinases are activated, a different gRNA is released, guiding the activator to a different gene. The results of BLADE can be seen in the graph below. |
<img src = "" style = "width:20%; height:100px;"> | <img src = "" style = "width:20%; height:100px;"> | ||
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− | As seen above, this is | + | As seen above, this is similar to our system. Except instead of activating different genes, we want to integrate the same gene to different levels based on the signal input. We adapted BLADE by integrating our well characterized parts into its framework. Instead of each gRNA in the circuit corresponding to the operator upstream of a different gene, all the unique gRNA's would correspond to one gene. The difference is that each gRNA targets a different copy of the gene. Each copy has a different number of target sequences for the a specific gRNA sequence to bind to. A diagram of this process can be found below. BLADE also allows us to integrate more signals and more recognition site, achieving a truth table with up to three inputs. The finished product relied on digital activation, (the recombinases are activated by the digital prescience or absence of a signal such as a hormone) and gave rise to different levels of analog gene expression, as stated in our goal.</p> |
<center><img src = "https://static.igem.org/mediawiki/2016/0/06/T--BostonU--RealRecombinase.png" style = "padding:0px 0px 50px 0px;; width:80%;"></center> | <center><img src = "https://static.igem.org/mediawiki/2016/0/06/T--BostonU--RealRecombinase.png" style = "padding:0px 0px 50px 0px;; width:80%;"></center> |
Revision as of 16:46, 24 September 2016