Team:PKU Beijing/Project/AND Gate 1/AND Gate Result

From 2009.igem.org

(Difference between revisions)
(AND Gates of Shan Shen)
(AND Gate of Shuke Wu)
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The result of other five AND gates are not shown here.
The result of other five AND gates are not shown here.
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==='''AND Gate of Shuke Wu'''===
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==='''AND Gates of Shuke Wu'''===
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This AND Gate family is made of pLac-supD & pBad-T7ptag.
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The typical pattern of this AND gate is like this: (picture from K228823)
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<partinfo>BBa_K228823 SequenceAndFeatures</partinfo>
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This family is the AND gate family constructed also the quickliest: at the same time with Shan Shen's AND gates.   
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This AND gates family contents nine AND gates with the difference on the RBS of the T7ptag: K228823, K228824, K228825, K228826, K228827, K228828, K228829, K228830, and K228831. And these gates are on the plasmid pSB4K5.
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In order to test the function of these AND gates, Shuke use a reporter GFP under the control of a T7 promoter: K228099. And the reporter is on the plasmid J61002.
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Using the E.coli with the reporter plasmid, he transformed the AND gate plasmids into it, and tested them using various combinations of different concentration of IPTG and arabinose. The result is tested by a microplate reader (Fig 1, 2, 3 and 4. For more detail, refer to our [[Team:PKU_Beijing/Notebook/Protocol/Chemical_Inducible_GFP|protocol]])
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[[Image:PKU_WSK_2K.png|600px|center|thumb|Fig1. GFP expression of AND gate, K228829: lac-SupD-pBad-T7ptag(rbs: B0033). The data are showed for (left to right): 1×10^-9, 1×10^-7, 1×10^-6, 1×10^-5 1×10^-4 and 1×10^-3M arabinose, and (bottom to top) 1×10^-9, 1×10^-7, 1×10^-6, 1×10^-5, 1×10^-4 and 1×10^-3M IPTG.]]
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==='''AND Gate of Guosheng Zhang (The Best)'''===
==='''AND Gate of Guosheng Zhang (The Best)'''===
==='''Other AND Gates'''===
==='''Other AND Gates'''===

Revision as of 06:55, 16 October 2009

 

Contents

AND Gates of Shan Shen

This AND Gate family is made of luxP-supD & pLac-T7ptag. The typical pattern of this AND gate is like this: (picture from K228119)


This family is the AND gate family constructed the fastest by us, and it had made us much more confident about other AND gates which were under construction at that time. This AND gates family contents nine AND gates with the difference on the RBS of the T7ptag: K228119, K228120, K228121, K228122, K228123, K228124, K228125, K228126, and K228127. And these gates are on the plasmid pSB4K5.

In order to test the function of these AND gates, Shan Shen use a reporter GFP under the control of a T7 promoter: K228099. And the reporter is on the plasmid J61002.

Using the E.coli with the reporter plasmid, she transformed the AND gate plasmids into it, and tested them using various combinations of different concentration of IPTG and HSL (homoserine lactone). The result is tested by a microplate reader (Fig 1, 2, 3 and 4. For more detail, refer to our protocol)

Fig1. GFP expression of AND gate, K228125: lux-SupD-lac-T7ptag (rbs: J44001). The data are showed for (left to right): 1×10^-9, 1×10^-8, 1×10^-7, 1×10^-6, 1×10^-5 1×10^-4 and 1×10^-3M IPTG, and (bottom to top) 1×10^-9, 1×10^-8, 1×10^-7, 1×10^-6, 1×10^-5 and 1×10^-4M HSL.
Fig2. GFP expression of AND gate, K228124: lux-SupD-lac-T7ptag (rbs: J61127). The data are showed for (left to right): 1×10^-9, 1×10^-8, 1×10^-7, 1×10^-6, 1×10^-5 1×10^-4 and 1×10^-3M IPTG, and (bottom to top) 1×10^-9, 1×10^-8, 1×10^-7, 1×10^-6, 1×10^-5 and 1×10^-4M HSL.
Fig3. GFP expression of AND gate, K228120: lux-SupD-lac-T7ptag (rbs: B0032). The data are showed for (left to right): 1×10^-9, 1×10^-8, 1×10^-7, 1×10^-6, 1×10^-5 1×10^-4 and 1×10^-3M IPTG, and (bottom to top) 1×10^-8, 1×10^-7, 1×10^-6, 1×10^-5 and 1×10^-4M HSL.
Fig4. GFP expression of AND gate, K228126 : lux-SupD-lac-T7ptag (rbs: B0033). The data are showed for (left to right): 1×10^-9, 1×10^-8, 1×10^-7, 1×10^-6, 1×10^-5 1×10^-4 and 1×10^-3M IPTG, and (bottom to top) 1×10^-9, 1×10^-8, 1×10^-7, 1×10^-6, 1×10^-5 and 1×10^-4M HSL.

Discussion: From the result of some of these AND gates, we found that many of these AND gates are inducible by IPTG, but independent of the concentration of HSL. It is obvious that the leakage of lux system is significant, and the basal expression of SupD is so high, that without HSL there is sufficient SupD to work on T7ptag. This result is consistent with the sensor result of lux system: there are quite amount of expression without inducing of HSL (for more detail, refer to Sensor Result).

To improve this AND gates family: Because the leakage is on the SupD side, we can not modulate the RBS (there is no RBS on SupD side) to get a good AND gate. If the leakage is on the T7ptag side, we may get some good result after modulate its RBS (change RBS or mutate it). The best solution is to use other inducible promoters to construct AND gates instead of lux system, and we actually got some good results by doing this: refer to AND gates of Shuke Wu, AND gates of Guosheng Zhang and other AND gates.

The result of other five AND gates are not shown here.

AND Gates of Shuke Wu

This AND Gate family is made of pLac-supD & pBad-T7ptag. The typical pattern of this AND gate is like this: (picture from K228823)


This family is the AND gate family constructed also the quickliest: at the same time with Shan Shen's AND gates. This AND gates family contents nine AND gates with the difference on the RBS of the T7ptag: K228823, K228824, K228825, K228826, K228827, K228828, K228829, K228830, and K228831. And these gates are on the plasmid pSB4K5.

In order to test the function of these AND gates, Shuke use a reporter GFP under the control of a T7 promoter: K228099. And the reporter is on the plasmid J61002.

Using the E.coli with the reporter plasmid, he transformed the AND gate plasmids into it, and tested them using various combinations of different concentration of IPTG and arabinose. The result is tested by a microplate reader (Fig 1, 2, 3 and 4. For more detail, refer to our protocol)

Fig1. GFP expression of AND gate, K228829: lac-SupD-pBad-T7ptag(rbs: B0033). The data are showed for (left to right): 1×10^-9, 1×10^-7, 1×10^-6, 1×10^-5 1×10^-4 and 1×10^-3M arabinose, and (bottom to top) 1×10^-9, 1×10^-7, 1×10^-6, 1×10^-5, 1×10^-4 and 1×10^-3M IPTG.

AND Gate of Guosheng Zhang (The Best)

Other AND Gates



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