Coding

Part:BBa_K2560255

Designed by: Daniel Marchal   Group: iGEM18_Marburg   (2018-09-28)


accD subunit from C. glutamicum, codonoptimized for V. natriegens

Acetyl-CoA Carboxylase subunits

accD encodes the carboxytransferase domain of the acetyl-CoA-carboxylase (Acc) in C. glutamicum. The enzyme is involved in fatty acid biosynthesis by converting acetyl-CoA into malonyl-CoA. In C. glutamicum the enzyme consists of two subunits, a biotin-carboxylase and a carboxytransferase. To get activ the enzyme has to be biotinylated what is made by an biotin-ligase (BirA).

For this part, accD was codonoptimized for V. natriegens and then synthetisized and integrated into the vector BBa_K2560002 via BsmBI. It is part of the Marburg Toolbox, a golden gate based system für modular cloning.

If accD shall be used with an 5' tag use this part, if there is no need for tagging, use BBa_K2560252.

Further down, an overview of the Marburg Toolbox is shown. 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 768
  • 23
    COMPATIBLE WITH RFC[23]
  • 25
    INCOMPATIBLE WITH RFC[25]
    Illegal AgeI site found at 277
  • 1000
    COMPATIBLE WITH RFC[1000]


Marburg Toolbox

We proudly present the Marburg Collection, a novel golden-gate-based toolbox containing various parts that are compatible with the PhytoBrick system and MoClo. Compared to other bacterial toolboxes, the Marburg Collection shines with superior flexibility. We overcame the rigid paradigm of plasmid construction - thinking in fixed backbone and insert categories - by achieving complete de novo assembly of plasmids.

36 connectors facilitate flexible cloning of multigene constructs and even allow for the inversion of individual transcription units. Additionally, our connectors function as insulators to avoid undesired crosstalk.

The Marburg Collection contains 123 parts in total, including:
inducible promoters, reporters, fluorescence and epitope tags, oris, resistance cassettes and genome engineering tools. To increase the value of the Marburg Collection, we additionally provide detailed experimental characterization for V. natriegens and a supportive software. We aspire availability of our toolbox for future iGEM teams to empower accelerated progression in their ambitious projects.


Figure 3: Hierarchical cloning is facilitated by subsequent Golden Gate reactions.
Basic building blocks like promoters or terminators are stored in level 0 plasmids. Parts from each category of our collection can be chosen to built level 1 plasmids harboring a single transcription unit. Up to five transcription units can be assembled into a level 2 plasmid.
Figure 4: Additional bases and fusion sites ensure correct spacing and allow tags.
Between some parts, additional base pairs were integrated to ensure correct spacing and to maintain the triplet code. We expanded our toolbox by providing N- and C- terminal tags by creating novel fusions and splitting the CDS and terminator part, respectively.


Parts of the Marburg Toolbox




Tags and Entry Vectors




  • K2560001 (Entry Vector with RFP dropout)
  • K2560002 (Entry Vector with GFP dropout)
  • K2560005 (Resistance Entry Vector with RFP Dropout)
  • K2560006 (Resistance Entry Vector with GFP Dropout)
  • K2560305 (gRNA Entry Vector with GFP Dropout)
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Categories
Parameters
None