Difference between revisions of "Part:BBa K4765010"

(Usage and Biology)
Line 14: Line 14:
 
|}
 
|}
 
===Usage and Biology===
 
===Usage and Biology===
We performed codon optimization on [https://parts.igem.org/Part:BBa_K4273004 BBa_K4273004](NpR5600) specifically for the ''Escherichia coli'' K12 strain, resulting in the creation of this part. The enzyme MysA catalyzes the initial reaction involved in the biosynthesis of Mycosporine-like amino acids (MAAs) within ''E. coli''.
+
We performed codon optimization on [https://parts.igem.org/Part:BBa_K4273004 BBa_K4273004(NpR5600)]specifically for the ''Escherichia coli'' K12 strain, resulting in the creation of this part. The enzyme MysA catalyzes the initial reaction involved in the biosynthesis of Mycosporine-like amino acids (MAAs) within ''E. coli''.
  
 
<!-- -->
 
<!-- -->
Line 25: Line 25:
 
<partinfo>BBa_K4765010 parameters</partinfo>
 
<partinfo>BBa_K4765010 parameters</partinfo>
 
<!-- -->
 
<!-- -->
 +
 
==References==
 
==References==
 
<references />
 
<references />

Revision as of 06:53, 2 October 2023


MysA codon optimized

contributed by Fudan iGEM 2023

Introduction

MysA (DDGS) is a dimethyl 4-degadusol synthase that converts Sedoheptulose 7-phosphate (S7P) into Demethyl 4-deoxygadusol[1].

contributed by Fudan iGEM 2023
Figure1 The biosynthetic pathway of shinorine, porphyra-334, palythine-Ser, and palythine-Thr. 1

Usage and Biology

We performed codon optimization on BBa_K4273004(NpR5600)specifically for the Escherichia coli K12 strain, resulting in the creation of this part. The enzyme MysA catalyzes the initial reaction involved in the biosynthesis of Mycosporine-like amino acids (MAAs) within E. coli.

Sequence and Features


Assembly Compatibility:
  • 10
    COMPATIBLE WITH RFC[10]
  • 12
    COMPATIBLE WITH RFC[12]
  • 21
    COMPATIBLE WITH RFC[21]
  • 23
    COMPATIBLE WITH RFC[23]
  • 25
    COMPATIBLE WITH RFC[25]
  • 1000
    INCOMPATIBLE WITH RFC[1000]
    Illegal BsaI.rc site found at 1198


References

  1. Chen, M., Rubin, G. M., Jiang, G., Raad, Z., & Ding, Y. (2021). Biosynthesis and heterologous production of mycosporine-like amino acid palythines. The Journal of Organic Chemistry, 86(16), 11160–11168.