Difference between revisions of "Part:BBa K2587008"
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<partinfo>BBa_K2587008 short</partinfo> | <partinfo>BBa_K2587008 short</partinfo> | ||
− | guaD | + | <i>guaD</i> encodes an enzyme called guanine deaminase which converts guanine to xanthine and ammonia. It can be used as the second step in the degradation of melamine to ammonia, as shown by Shaw <i>et al.</i> 2016<sup>1</sup>. In this pathway, it is able to convert ammeline to ammelide. |
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<partinfo>BBa_K2587008 parameters</partinfo> | <partinfo>BBa_K2587008 parameters</partinfo> | ||
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+ | <p><strong><h4>References</h4></strong></p> | ||
+ | |||
+ | <p><strong>(1)</strong> Shaw, A. Joe, et al. "Metabolic engineering of microbial competitive advantage for industrial fermentation processes." Science 353.6299 (2016): 583-586.<br> | ||
+ | http://science.sciencemag.org/content/353/6299/583?casa_token=_q3c5eJ3Gv4AAAAA:3HmgrxE_r8XSnR8YUtF3cLZ9I-luClCJEJcwxy6E_J711AgFcrN7i-ozHCnV_HZQmxteX12dXxw5rMc</p> |
Latest revision as of 21:49, 17 October 2018
guaD
guaD encodes an enzyme called guanine deaminase which converts guanine to xanthine and ammonia. It can be used as the second step in the degradation of melamine to ammonia, as shown by Shaw et al. 20161. In this pathway, it is able to convert ammeline to ammelide.
Sequence and Features
Assembly Compatibility:
- 10INCOMPATIBLE WITH RFC[10]Illegal XbaI site found at 11
Illegal SpeI site found at 18
Illegal SpeI site found at 1371 - 12INCOMPATIBLE WITH RFC[12]Illegal SpeI site found at 18
Illegal SpeI site found at 1371
Illegal NotI site found at 2
Illegal NotI site found at 1378 - 21COMPATIBLE WITH RFC[21]
- 23INCOMPATIBLE WITH RFC[23]Illegal XbaI site found at 11
Illegal SpeI site found at 18
Illegal SpeI site found at 1371 - 25INCOMPATIBLE WITH RFC[25]Illegal XbaI site found at 11
Illegal SpeI site found at 18
Illegal SpeI site found at 1371
Illegal AgeI site found at 840 - 1000INCOMPATIBLE WITH RFC[1000]Illegal BsaI site found at 25
Illegal BsaI.rc site found at 1364
References
(1) Shaw, A. Joe, et al. "Metabolic engineering of microbial competitive advantage for industrial fermentation processes." Science 353.6299 (2016): 583-586.
http://science.sciencemag.org/content/353/6299/583?casa_token=_q3c5eJ3Gv4AAAAA:3HmgrxE_r8XSnR8YUtF3cLZ9I-luClCJEJcwxy6E_J711AgFcrN7i-ozHCnV_HZQmxteX12dXxw5rMc