Difference between revisions of "Part:BBa K2407309"

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__NOTOC__
 
__NOTOC__
 
<partinfo>BBa_K2407309 short</partinfo>
 
<partinfo>BBa_K2407309 short</partinfo>
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[https://2020.igem.org/Team:Toulouse_INSA-UPS Toulouse_INSA-UPS 2020]contributed to the characterisation of this part by adding a new documentation learned form literature on the expression and stability of CrtI. <br>
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(<small>--[[User:antonmykhailiuk|antonmykhailiuk]] 19:10, 08 October 2020 (UTC+2)</small>)<br>
  
 
crtI encodes desaturase, which  is able to convert phytoene into lycopene through two steps. It is the key factor in the synthesis of carotene from X. dendrorhous.
 
crtI encodes desaturase, which  is able to convert phytoene into lycopene through two steps. It is the key factor in the synthesis of carotene from X. dendrorhous.
  
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<h1>Contribution from other teams</h1>
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==Toulouse_INSA-UPS 2020's contribution==
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===''Characterisation''===
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<p style="text-indent: 40px">
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Since the
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Rabeharindranto et al. analyzed
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===''References for Toulouse_INSA-UPS 2020's contribution''===
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*[1]Rabeharindranto, H., Castaño-Cerezo, S., Lautier, T., Garcia-Alles, L. F., Treitz, C., Tholey, A., & Truan, G. (2019). Enzyme-fusion strategies for redirecting and improving carotenoid synthesis in S. cerevisiae. Metabolic Engineering Communications, 8, e00086. https://doi.org/10.1016/j.mec.2019.e00086
  
 
<!-- Add more about the biology of this part here
 
<!-- Add more about the biology of this part here

Revision as of 17:35, 8 October 2020


crtI

Toulouse_INSA-UPS 2020contributed to the characterisation of this part by adding a new documentation learned form literature on the expression and stability of CrtI.
(--antonmykhailiuk 19:10, 08 October 2020 (UTC+2))

crtI encodes desaturase, which is able to convert phytoene into lycopene through two steps. It is the key factor in the synthesis of carotene from X. dendrorhous.

Contribution from other teams

Toulouse_INSA-UPS 2020's contribution

Characterisation

Since the Rabeharindranto et al. analyzed

References for Toulouse_INSA-UPS 2020's contribution

  • [1]Rabeharindranto, H., Castaño-Cerezo, S., Lautier, T., Garcia-Alles, L. F., Treitz, C., Tholey, A., & Truan, G. (2019). Enzyme-fusion strategies for redirecting and improving carotenoid synthesis in S. cerevisiae. Metabolic Engineering Communications, 8, e00086. https://doi.org/10.1016/j.mec.2019.e00086

Sequence and Features


Assembly Compatibility:
  • 10
    COMPATIBLE WITH RFC[10]
  • 12
    COMPATIBLE WITH RFC[12]
  • 21
    INCOMPATIBLE WITH RFC[21]
    Illegal BglII site found at 204
  • 23
    COMPATIBLE WITH RFC[23]
  • 25
    COMPATIBLE WITH RFC[25]
  • 1000
    INCOMPATIBLE WITH RFC[1000]
    Illegal BsaI site found at 1108
    Illegal SapI site found at 508