Team:Shenzhen/Result/YAO.Sensor
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<ul><li>III. Control of promoter activity by REX</li></ul> | <ul><li>III. Control of promoter activity by REX</li></ul> | ||
- | <ul>< | + | <ul><p>In yeast mitochondria, transcription initiation factor MTF1, combined with RNA polymerase Rpo41, bind to promoter to initiate transcription. It is MTF1 that discerns the promoter region, and the binding of MTF1 on promoter region is reversible. Also the binding of REX on ROP, a DNA region near promoter is also reversible.</p></ul> |
<ul><p>[[File:Eqn11.jpg]]</p> | <ul><p>[[File:Eqn11.jpg]]</p> | ||
<p><i>P stands for promoter, RP stands for repressor, i.e. REX’, and PRP stands for promoter bidden with repressor.</i></p></ul> | <p><i>P stands for promoter, RP stands for repressor, i.e. REX’, and PRP stands for promoter bidden with repressor.</i></p></ul> | ||
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<ul><p>At equilibrium: [[File:Eqn26.jpg]] , so</p> | <ul><p>At equilibrium: [[File:Eqn26.jpg]] , so</p> | ||
<p>[[File:Eqn27.jpg]] (19)</p></ul> | <p>[[File:Eqn27.jpg]] (19)</p></ul> | ||
- | + | ||
<ul><div class="figurep"> | <ul><div class="figurep"> | ||
[[File:result_yao_sensor_p5.jpg]] | [[File:result_yao_sensor_p5.jpg]] | ||
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<p>With (21) in (20),</p> | <p>With (21) in (20),</p> | ||
<p>[[File:Eqn30.jpg]] (22)</p></ul> | <p>[[File:Eqn30.jpg]] (22)</p></ul> | ||
- | <ul><p>At equilibrium , so</p> | + | <ul><p>At equilibrium: [[File:Eqn31.jpg]] , so</p> |
- | <p>[[File: | + | <p>[[File:Eqn32.jpg]] (23)</p> |
<p><i>Nrib = 1. Kp = 288 U/h, assuming 40 amino acids per second. KdGFP = 1.386 h-1 equal to a half time of 30 min [3]. Growth rate = 0.1 h-1.</i></p></ul> | <p><i>Nrib = 1. Kp = 288 U/h, assuming 40 amino acids per second. KdGFP = 1.386 h-1 equal to a half time of 30 min [3]. Growth rate = 0.1 h-1.</i></p></ul> | ||
<ul><div class="figurep"> | <ul><div class="figurep"> | ||
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<ul><div class="figurep"> | <ul><div class="figurep"> | ||
[[File:result_yao_sensor_p8.jpg]] | [[File:result_yao_sensor_p8.jpg]] | ||
- | <p>Figure 8. | + | <p>Figure 8. XGFP with different NAD+/NADH ratio.</p></div></ul> |
- | <ul>< | + | <ul><li>Response for Dynamic states</li></ul> |
<ul><p>Because the NAD+/NADH level might change in times, so we assume that the change is sinusoidal function as follows: </p> | <ul><p>Because the NAD+/NADH level might change in times, so we assume that the change is sinusoidal function as follows: </p> | ||
<p> NH=Asin(t/2)+B</p> | <p> NH=Asin(t/2)+B</p> | ||
- | <p> A=100, B=50, t=0~40. </p></ul> | + | <p> A=100, B=50, t=0~40 h. </p></ul> |
<ul><p>The curve is shown in Figure 9. Then as a result the production of GFP might also changes as a response to the change in NAD+/NADH.</p></ul> | <ul><p>The curve is shown in Figure 9. Then as a result the production of GFP might also changes as a response to the change in NAD+/NADH.</p></ul> | ||
<ul><div class="figurep"> | <ul><div class="figurep"> | ||
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[[File:result_yao_sensor_p10.jpg]] | [[File:result_yao_sensor_p10.jpg]] | ||
<p>Figure 10. Response in GFP production</p></div></ul> | <p>Figure 10. Response in GFP production</p></div></ul> | ||
- | + | </div> | |
<div class="context"> | <div class="context"> | ||
<h5>References</h5> | <h5>References</h5> | ||
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<ul><p>[5] Deshpande, A. P. and S. S. Patel 2012. "Mechanism of transcription initiation by the yeast mitochondrial RNA polymerase." Biochim Biophys Acta.</p></ul> | <ul><p>[5] Deshpande, A. P. and S. S. Patel 2012. "Mechanism of transcription initiation by the yeast mitochondrial RNA polymerase." Biochim Biophys Acta.</p></ul> | ||
<ul><p>[6] Modelling of The Redoxilator by 2009 DTU-DENMARK iGEM team.</p></ul> | <ul><p>[6] Modelling of The Redoxilator by 2009 DTU-DENMARK iGEM team.</p></ul> | ||
- | <div> | + | </div> |
</div> | </div> | ||
{{:Team:Shenzhen/Temp/gallery.htm}} | {{:Team:Shenzhen/Temp/gallery.htm}} |
Latest revision as of 01:54, 27 September 2012