Difference between revisions of "Team:Fudan/Primers"

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                 <ul id="pageContentNav" class="hide-on-med-and-down z-depth-0">
                     <li><a href="https://2018.igem.org/Team:Fudan/InterLab">iGEM interLab</a></li>
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                     <li><a href="./InterLab">iGEM interLab</a></li>
                     <li><a href="https://2018.igem.org/Team:Fudan/Notebook">Our notebook</a></li>
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                     <li><a href="./Notebook">Our notebook</a></li>
                     <li><a href="https://2018.igem.org/Team:Fudan/Primers">Primers used</a></li>
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                     <li>Primers used</li>
                     <li><a href="https://2018.igem.org/Team:Fudan/Protocols">Protocols</a></li>
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                     <li><a href="./Protocols">Protocols</a></li>
                     <li><a href="https://2018.igem.org/Team:Fudan/Safety">Safety</a></li>
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                     <li style="margin-bottom: 10px;"><a href="./Safety">Safety</a></li>
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                    <li class="onThisPageNav"><a href="#section1">General safety concerns</a></li>
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                    <li class="onThisPageNav"><a href="#section2">Laboratory practice</a></li>
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                    <li class="onThisPageNav"><a href="#section3">Specific safety concerns</a></li>-->
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                     <p>Primers</p>
                        <div class="expFigureHolder width80 right-on-med-and-up"> <!-- width20到width80都有 大屏上宽是对应值 在小屏宽度100%;有大屏的右浮动和左浮动right-on-med-and-up和left-on-med-and-up -->
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                            <img class="responsive-img" src="https://static.igem.org/mediawiki/2018/4/4b/T--Fudan--model_wyh_2.png">
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                            <p>
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                    <p>gBlocks</p>
                                Figure 2. Previous designs with single element are not able to handle transmembrane signal processing task. The input-output relationship of a single element is characterized by Hill Equation, which comes with a 'detection range' defined by Kd and n. When the input range does not match the detection range, the system cannot faithfully represent the on and off of the input.
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<pre>> TEVp(FL)(CO)
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ATCACGTTAGGGCTAGTCGACGCCACCATGGGGGAGAGCCTGTTCAAAGGGCCCCGCGAT
 
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TATAACCCTATAAGCAGTACAATATGTCATCTGACTAACGAATCAGACGGACATACGACC
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TCCCTCTACGGGATAGGGTTCGGCCCCTTCATCATCACCAATAAGCACTTGTTTAGGCGA
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AATAACGGCACGCTTCTGGTACAGTCCCTGCACGGGGTCTTTAAGGTCAAGAATACGACA
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ACTCTCCAACAGCATCTTATTGATGGACGCGACATGATTATCATTAGAATGCCTAAAGAT
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TTTCCGCCGTTCCCACAAAAATTGAAGTTTAGAGAACCGCAAAGGGAAGAGCGCATTTGT
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TTGGTAACCACTAATTTTCAGACAAAGAGCATGTCCTCCATGGTTAGTGACACTTCATGC
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ACGTTTCCTTCTTCTGATGGTATATTTTGGAAACATTGGATACAGACGAAAGACGGACAG
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TGCGGGTCCCCTCTTGTCTCTACCAGGGACGGCTTTATCGTCGGCATACATTCAGCCAGT
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AATTTCACAAACACAAATAATTATTTTACTAGCGTGCCCAAAAATTTCATGGAGTTGCTG
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ACCAATCAAGAGGCACAGCAGTGGGTTTCTGGATGGAGACTCAACGCCGACAGCGTACTC
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TGGGGTGGACATAAGGTGTTCATGgtgAAACCCGAGGAACCCTTTCAGCCGGTGAAAGAG
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GCCACGCAACTGATGAACGAATTGGTCTATAGCCAGTGAAAGCTTCCCTCATTCAAGTAC</pre>
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<pre>ZF21_16N-CfaN-CfaC-ZF21_16C(CO)
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ATCACGTTAGGGCTAGTCGACGCCACCatgGCAAGTCCTAGGGTGCGGACCGGATCAAAG
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ACGCCGCCTCACGAACGACCATTTCAATGCAGGATCTGCATGCGGAACTTCTCCCGGAAC
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TTTATCCTCCAGCGGCATACACGGACCCATACCGGAGAAAAGCCCTTCCAGTGCCTCTCA
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TATGACACGGAAATTTTGACCGTCGAATATGGCTTTCTTCCTATCGGGAAGATCGTTGAA
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GAAAGAATTGAATGCACGGTCTATACCGTGGATAAGAATGGTTTTGTATACACTCAACCG
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ATAGCGCAGTGGCATAACAGGGGGGAGCAAGAAGTCTTTGAATACTGTTTGGAGGATGGG
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TCCATCATCAGGGCAACCAAGGACCATAAGTTCATGACCACTGATGGGCAGATGCTTCCG
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ATTGATGAAATTTTCGAAAGGGGCCTTGACCTGAAGCAGGTCGATGGGTTGCCAATGGTT
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AAGATCATATCACGGAAGAGCCTGGGGACACAGAATGTGTATGATATTGGAGTAGGCGAG
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CCGCACAACTTCCTCCTTAAAAATGGTCTCGTAGCTTCAAACTGTAGGATATGCATGCGA
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AACTTCTCCCAGGGGGGCAACTTGGTCAGGCACCTTCGGACGCATACCGGAGAGAAGCCA
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TTTCAGTGCAGGATTTGCATGCGAAATTTTTCTCAGCAAACCGGGTTGAATGTACATCTG
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AAAACGCATACAGGTGAGAAGGGCTCCTGAAAGCTTCCCTCATTCAAGTAC</pre>
 
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             <!--Abstract on content page-->
 
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Revision as of 11:06, 17 October 2018

Primers used

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Primers used

...

Primers

gBlocks

> TEVp(FL)(CO)
ATCACGTTAGGGCTAGTCGACGCCACCATGGGGGAGAGCCTGTTCAAAGGGCCCCGCGAT
TATAACCCTATAAGCAGTACAATATGTCATCTGACTAACGAATCAGACGGACATACGACC
TCCCTCTACGGGATAGGGTTCGGCCCCTTCATCATCACCAATAAGCACTTGTTTAGGCGA
AATAACGGCACGCTTCTGGTACAGTCCCTGCACGGGGTCTTTAAGGTCAAGAATACGACA
ACTCTCCAACAGCATCTTATTGATGGACGCGACATGATTATCATTAGAATGCCTAAAGAT
TTTCCGCCGTTCCCACAAAAATTGAAGTTTAGAGAACCGCAAAGGGAAGAGCGCATTTGT
TTGGTAACCACTAATTTTCAGACAAAGAGCATGTCCTCCATGGTTAGTGACACTTCATGC
ACGTTTCCTTCTTCTGATGGTATATTTTGGAAACATTGGATACAGACGAAAGACGGACAG
TGCGGGTCCCCTCTTGTCTCTACCAGGGACGGCTTTATCGTCGGCATACATTCAGCCAGT
AATTTCACAAACACAAATAATTATTTTACTAGCGTGCCCAAAAATTTCATGGAGTTGCTG
ACCAATCAAGAGGCACAGCAGTGGGTTTCTGGATGGAGACTCAACGCCGACAGCGTACTC
TGGGGTGGACATAAGGTGTTCATGgtgAAACCCGAGGAACCCTTTCAGCCGGTGAAAGAG
GCCACGCAACTGATGAACGAATTGGTCTATAGCCAGTGAAAGCTTCCCTCATTCAAGTAC
ZF21_16N-CfaN-CfaC-ZF21_16C(CO)
ATCACGTTAGGGCTAGTCGACGCCACCatgGCAAGTCCTAGGGTGCGGACCGGATCAAAG
ACGCCGCCTCACGAACGACCATTTCAATGCAGGATCTGCATGCGGAACTTCTCCCGGAAC
TTTATCCTCCAGCGGCATACACGGACCCATACCGGAGAAAAGCCCTTCCAGTGCCTCTCA
TATGACACGGAAATTTTGACCGTCGAATATGGCTTTCTTCCTATCGGGAAGATCGTTGAA
GAAAGAATTGAATGCACGGTCTATACCGTGGATAAGAATGGTTTTGTATACACTCAACCG
ATAGCGCAGTGGCATAACAGGGGGGAGCAAGAAGTCTTTGAATACTGTTTGGAGGATGGG
TCCATCATCAGGGCAACCAAGGACCATAAGTTCATGACCACTGATGGGCAGATGCTTCCG
ATTGATGAAATTTTCGAAAGGGGCCTTGACCTGAAGCAGGTCGATGGGTTGCCAATGGTT
AAGATCATATCACGGAAGAGCCTGGGGACACAGAATGTGTATGATATTGGAGTAGGCGAG
CCGCACAACTTCCTCCTTAAAAATGGTCTCGTAGCTTCAAACTGTAGGATATGCATGCGA
AACTTCTCCCAGGGGGGCAACTTGGTCAGGCACCTTCGGACGCATACCGGAGAGAAGCCA
TTTCAGTGCAGGATTTGCATGCGAAATTTTTCTCAGCAAACCGGGTTGAATGTACATCTG
AAAACGCATACAGGTGAGAAGGGCTCCTGAAAGCTTCCCTCATTCAAGTAC

Abstract

Contact-dependent signaling is critical for multicellular biological events, yet customizing contact-dependent signal transduction between cells remains challenging. Here we have developed the ENABLE toolbox, a complete set of transmembrane binary logic gates. Each gate consists of 3 layers: Receptor, Amplifier, and Combiner. We first optimized synthetic Notch receptors to enable cells to respond to different signals across the membrane reliably. These signals, individually amplified intracellularly by transcription, are further combined for computing. Our engineered zinc finger-based transcription factors perform binary computation and output designed products. In summary, we have combined spatially different signals in mammalian cells, and revealed new potentials for biological oscillators, tissue engineering, cancer treatments, bio-computing, etc. ENABLE is a toolbox for constructing contact-dependent signaling networks in mammals. The 3-layer design principle underlying ENABLE empowers any future development of transmembrane logic circuits, thus contributes a foundational advance to Synthetic Biology.