Difference between revisions of "Part:BBa K1399016:Experience"
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===Applications of BBa_K1399016=== | ===Applications of BBa_K1399016=== | ||
+ | We characterized and compared the instability of this SsrA-LAA tagged GFP to others containing different variants of SsrA tags. We determined the steady state fluorescence/OD ratio of E. coli JM109 at uninduced (minimum steady state) and induced (maximum steady state) state. To see how the temperature of environment can affect protein degradation efficiency we repeated experiments in several temperatures (28⁰C, 32⁰C, 37⁰C and 42⁰C). Our data are summarised below. (For more information on SsrA degradation tag system, our experimental assays and results please visit our wiki page [http://2014.igem.org/Team:Edinburgh].) | ||
+ | [[File:EdiGEM14 GFP min and max values at different temperatures.jpg|600px|thumb|center|'''SsrA degron tagged RFP minimum (left) and maximum (right) fluorescence per OD at four different temperatures (28⁰C, 32⁰C, 37⁰C and 42⁰C).''']] [[File:EDiGEM14 GFP legend.png|500px|thumb|center|'''Summary of BioBricks to which our characterization data is applicable.''']] | ||
===User Reviews=== | ===User Reviews=== |
Latest revision as of 22:47, 15 October 2014
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Applications of BBa_K1399016
We characterized and compared the instability of this SsrA-LAA tagged GFP to others containing different variants of SsrA tags. We determined the steady state fluorescence/OD ratio of E. coli JM109 at uninduced (minimum steady state) and induced (maximum steady state) state. To see how the temperature of environment can affect protein degradation efficiency we repeated experiments in several temperatures (28⁰C, 32⁰C, 37⁰C and 42⁰C). Our data are summarised below. (For more information on SsrA degradation tag system, our experimental assays and results please visit our wiki page [http://2014.igem.org/Team:Edinburgh].)
User Reviews
UNIQ0801d5b5f1dfa2a4-partinfo-00000000-QINU UNIQ0801d5b5f1dfa2a4-partinfo-00000001-QINU