Difference between revisions of "Part:BBa K1326004"
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===Functional Parameters=== | ===Functional Parameters=== | ||
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[[File:Fluorescence Spectra of ChlI1 + ChlD at 420nm Excitation.png]] | [[File:Fluorescence Spectra of ChlI1 + ChlD at 420nm Excitation.png]] | ||
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− | Figure 1: /ChlI1 + ChlD/ composite part has converted Mg-Protoporphyrn IX into Protoporphyrin IX. | + | '''''Figure 1:''''' /ChlI1 + ChlD/ composite part has converted Mg-Protoporphyrn IX into Protoporphyrin IX. |
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[[File:Fluorescence Intensity of Mg-Protoporphyrin Formation.png]] | [[File:Fluorescence Intensity of Mg-Protoporphyrin Formation.png]] | ||
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− | Figure 2: Increasing fluorescence intensity over time through function of /ChlI1 + ChlD/ composite part.. | + | '''''Figure 2:''''' Increasing fluorescence intensity over time through function of /ChlI1 + ChlD/ composite part.. |
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Revision as of 16:35, 16 October 2014
Plac + ChlI1 + ChlD
Composite part incorporating the genes adding a Mg ion to protoporphyrin IX, as a part of the chlorophyll biosynthetic pathway.
Magnesium chelatase subunit I (ChlI1) and Magnesium chelatase subunit D (ChlD) form an ATP-dependent complex (increased yield is seen if ChlI2 subunit is also present). This complex acts on protoporphyrin IX, bound to the ChlH protein, and inserts a magnesium ion which produces Mg-protoporphyrin IX.
Has since been added to: BBa_K1326008
Sequence and Features
Assembly Compatibility:
- 10COMPATIBLE WITH RFC[10]
- 12INCOMPATIBLE WITH RFC[12]Illegal NotI site found at 2666
- 21INCOMPATIBLE WITH RFC[21]Illegal BglII site found at 439
Illegal BglII site found at 1095
Illegal BglII site found at 1290
Illegal BglII site found at 3371
Illegal BamHI site found at 487 - 23COMPATIBLE WITH RFC[23]
- 25INCOMPATIBLE WITH RFC[25]Illegal NgoMIV site found at 1946
Illegal NgoMIV site found at 2765
Illegal NgoMIV site found at 3307 - 1000COMPATIBLE WITH RFC[1000]
Functional Parameters
Figure 1: /ChlI1 + ChlD/ composite part has converted Mg-Protoporphyrn IX into Protoporphyrin IX.
Figure 2: Increasing fluorescence intensity over time through function of /ChlI1 + ChlD/ composite part..