Difference between revisions of "Part:BBa K5526001"
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+ | <title>BBa_K5526001 - Plldr New Promoter Documentation</title> | ||
+ | <style> | ||
+ | /* General text alignment and figure style */ | ||
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+ | <!-- Part Name and Profile Section --> | ||
+ | <h2>New Basic Part: BBa_K5526001 (Plldr New Promoter)</h2> | ||
+ | |||
+ | <h3>Profile</h3> | ||
+ | <p><strong>Name:</strong> Plldr New Promoter</p> | ||
+ | <p><strong>Base Pairs:</strong> 390bp</p> | ||
+ | <p><strong>Origin:</strong> Bacteria, synthesized</p> | ||
+ | <p><strong>Properties:</strong> The Plldr new promoter, derived from <i>Lactobacillus plantarum</i>, is a lactate-inducible promoter known for its ability to respond to the presence of lactic acid.</p> | ||
+ | |||
+ | <!-- Usage and Biology Section --> | ||
+ | <h3>Usage and Biology</h3> | ||
+ | <p>The Plldr new promoter, derived from <i>Lactobacillus plantarum</i>, is a lactate-inducible promoter known for its ability to respond to the presence of lactic acid. It is a moderately strong promoter, offering controlled expression levels of target genes. Plldr's activity is influenced by lactate concentration, making it useful for applications where gene expression needs to be tightly regulated in response to metabolic changes.</p> | ||
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+ | <p>Plldr(new) is a lactic acid promoter that is activated under high lactic acid concentrations, a trait commonly found in tumor areas. It includes several improvements to the original promoter, making it more accurate and resistant to inhibition under low oxygen concentrations.</p> | ||
+ | |||
+ | <!-- Figure 1 --> | ||
+ | <figure> | ||
+ | <img src="https://static.igem.wiki/teams/5526/bba-k5526001/1.png" style="width: 70%;" alt="Gene map of Plldr new promoter"> | ||
+ | <figcaption>Figure 1. Gene map of Plldr new promoter</figcaption> | ||
+ | </figure> | ||
+ | |||
+ | <!-- Cultivation Section --> | ||
+ | <h3>Cultivation</h3> | ||
+ | <p>Plldr(new) is activated by high lactic acid concentrations, a condition often found in tumor environments. The promoter has undergone modifications to ensure it remains active even in low oxygen conditions. Plactate 2 (which includes the Plldr new promoter) plasmids were used as a template for PCR amplification, resulting in a fragment of 3800bp. Figure 2 shows a band consistent with the target size, confirming the successful amplification of the linearized plasmid. After gel recovery, the new Plldr fragment was obtained.</p> | ||
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+ | <!-- Figure 2 --> | ||
+ | <figure> | ||
+ | <img src="https://static.igem.wiki/teams/5526/bba-k5526001/2.png" style="width: 30%;" alt="PCR amplification of plasmid with promoter"> | ||
+ | <figcaption>Figure 2. PCR amplification of plasmid with Plldr new promoter.</figcaption> | ||
+ | </figure> | ||
+ | |||
+ | </body> | ||
+ | </html> |
Latest revision as of 05:56, 29 September 2024
Plldr(New)promoter
Sequence and Features
- 10COMPATIBLE WITH RFC[10]
- 12COMPATIBLE WITH RFC[12]
- 21COMPATIBLE WITH RFC[21]
- 23COMPATIBLE WITH RFC[23]
- 25COMPATIBLE WITH RFC[25]
- 1000COMPATIBLE WITH RFC[1000]
New Basic Part: BBa_K5526001 (Plldr New Promoter)
Profile
Name: Plldr New Promoter
Base Pairs: 390bp
Origin: Bacteria, synthesized
Properties: The Plldr new promoter, derived from Lactobacillus plantarum, is a lactate-inducible promoter known for its ability to respond to the presence of lactic acid.
Usage and Biology
The Plldr new promoter, derived from Lactobacillus plantarum, is a lactate-inducible promoter known for its ability to respond to the presence of lactic acid. It is a moderately strong promoter, offering controlled expression levels of target genes. Plldr's activity is influenced by lactate concentration, making it useful for applications where gene expression needs to be tightly regulated in response to metabolic changes.
Plldr(new) is a lactic acid promoter that is activated under high lactic acid concentrations, a trait commonly found in tumor areas. It includes several improvements to the original promoter, making it more accurate and resistant to inhibition under low oxygen concentrations.
Cultivation
Plldr(new) is activated by high lactic acid concentrations, a condition often found in tumor environments. The promoter has undergone modifications to ensure it remains active even in low oxygen conditions. Plactate 2 (which includes the Plldr new promoter) plasmids were used as a template for PCR amplification, resulting in a fragment of 3800bp. Figure 2 shows a band consistent with the target size, confirming the successful amplification of the linearized plasmid. After gel recovery, the new Plldr fragment was obtained.