Difference between revisions of "Part:BBa K3798005"
Line 2: | Line 2: | ||
__NOTOC__ | __NOTOC__ | ||
<partinfo>BBa_K3798005 short</partinfo> | <partinfo>BBa_K3798005 short</partinfo> | ||
− | + | Silver is one of the most wasted precious metals that can be found in effluents, streams and even food. As our project is to develop a precious metal recycling platform, we chose Ag+ as the demonstration ion of this phase of the project. Aptamers are oligonucleotides that can bind targeted molecules with its secondary structures, in our project, Ag+ ion. BBa_K3798005 is a Ag+ aptamer obtained from a previous paper[1], and this particular aptamer had shown outstanding abilities efficiency and satbility in Ag+ ion capture. | |
− | + | ||
<!-- Add more about the biology of this part here | <!-- Add more about the biology of this part here | ||
+ | ===Characterization=== | ||
+ | ==Binding efficiency and stability== | ||
+ | [[File:T--SHSBNU_China--silver ion 1.png|600px|thumb|center]] | ||
+ | <p class="figure-description"><b><center>Fig.1 Remaining Ag+ ion concentration of the solution after treated by different types of aptamers. </center></b></p > | ||
+ | |||
===Usage and Biology=== | ===Usage and Biology=== | ||
Revision as of 05:16, 18 October 2021
ssDNA, our best aptamer for Ag+ ion 2
Silver is one of the most wasted precious metals that can be found in effluents, streams and even food. As our project is to develop a precious metal recycling platform, we chose Ag+ as the demonstration ion of this phase of the project. Aptamers are oligonucleotides that can bind targeted molecules with its secondary structures, in our project, Ag+ ion. BBa_K3798005 is a Ag+ aptamer obtained from a previous paper[1], and this particular aptamer had shown outstanding abilities efficiency and satbility in Ag+ ion capture.
Sequence and Features
Assembly Compatibility:
- 10COMPATIBLE WITH RFC[10]
- 12COMPATIBLE WITH RFC[12]
- 21COMPATIBLE WITH RFC[21]
- 23COMPATIBLE WITH RFC[23]
- 25COMPATIBLE WITH RFC[25]
- 1000COMPATIBLE WITH RFC[1000]