Difference between revisions of "Part:BBa K4169027"
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<partinfo>BBa_K4169027 short</partinfo> | <partinfo>BBa_K4169027 short</partinfo> | ||
− | + | This suicide system contains a constitutive promoter (BBa_J23110), RNA thermometer (BBa_K4169005), strong RBS (BBa_B0034), toxin HepT (BBa_K4169006), and a terminator(hadn't been added in this page),which would express the HepT toxin below 28 ℃ to commit suicide. | |
===Usage and Biology=== | ===Usage and Biology=== |
Revision as of 15:06, 9 October 2022
A Suicide System: working when excreted in vitro
This suicide system contains a constitutive promoter (BBa_J23110), RNA thermometer (BBa_K4169005), strong RBS (BBa_B0034), toxin HepT (BBa_K4169006), and a terminator(hadn't been added in this page),which would express the HepT toxin below 28 ℃ to commit suicide.
Usage and Biology
This composite part is one of temperature-based suicide schemes for the engineered bacteria functioning in mammal intestine. It was designed to lead bacteria to commit suicide as they are leaked into the environment (at low temperatures) but do not affect the growth of engineered bacteria in intestine (at high temperatures).
Functional Parameters
To verify the function of this composite part, we transferred it into E.coli DH5α. Meanwhile, we also transformed blank plasmid (only with ori and cmR) into DH5α as control group. We incubated engineered bacteria at 37 ℃ and 28 ℃, taking the bacteria with blank plasmid as control. As the Figure 1 shows, medium of experimental group shaked at 28 ℃ is more limpid than ones shaked at 37 ℃; however, in the control group, the medium shaked at 28 ℃ is almost as turbid as ones shaked at 37 ℃.
We also plotted the quantitative growth curves at 28 ℃ in this suicide scheme. We got OD600 data changing over time by culturing our engineered bacteria and control bacteria in an automatic microplate reader for 12 hours. Compared with controls, the growth of our engineered bacteria was inhibited obviously(Figure 2).
To further verify the temperature sensibility of this composite part, we reput bacteria cultured at 28 ℃ into an oribital shaker at 37 ℃ overnight. Compared with themselves, the medium becomes turbid observably at 37 ℃, which means this part could make engineered bacteria kill themselves at 28 ℃ and let them survive at 37 ℃, working as expected(Figure 3).
Sequence and Features
Sequence and Features
- 10COMPATIBLE WITH RFC[10]
- 12INCOMPATIBLE WITH RFC[12]Illegal NheI site found at 7
Illegal NheI site found at 30 - 21COMPATIBLE WITH RFC[21]
- 23COMPATIBLE WITH RFC[23]
- 25COMPATIBLE WITH RFC[25]
- 1000INCOMPATIBLE WITH RFC[1000]Illegal SapI site found at 82