Coding
Hin LVA

Part:BBa_J31001:Design

Designed by: Erin Zwack, Sabriya Rosemond   Group: iGEM06_Davidson   (2006-07-12)
Revision as of 03:18, 29 October 2006 by Kahaynes (Talk | contribs) (Biobricks)

DNA invertase Hin tagged with LVA


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
    COMPATIBLE WITH RFC[1000]


Design Notes

This part is cloned in plasmid pSB1A2.

Biobricks

The Biobricks on this part are not wildtype but the cut sites are still viable.

BioBrick Prefix
There is no T spacer between the NotI site and the XbaI site. There is no G spacer between the XbaI and the coding region.
GAATTCGCGGCCGC-TCTAGA-
Hin coding TGGCTACTATTGGGTATATTCGGGTGTCAACAATTGACCAAAATATCGAT

TTACAGCGTAATGCGCTTACCAGTGCAAATTGTGACCGCATTTTTGAGGA
CCGTATCAGTGGCAAGATTGCAAACCGCCCCGGCCTGAAACGAGCGTTAA
AGTATGTAAATAAAGGCGATACTCTTGTCGTCTGGAAATTAGACAGACTG
GGCCGCAGCGTGAAAAACCTGGTGGCGTTAATATCAGAATTACATGAACG
TGGAGCTCACTTCCATTCTTTAACCGATAGTATTGATACCAGTAGCGCGA
TGGGGCGATTCTTTTTTCATGTAATGTCAGCACTGGCCGAGATGGAGCGA
GAATTAATTGTCGAGCGAACCCTTGCCGGACTGGCTGCCGCCAGAGCGCA
AGGACGACTGGGAGGGCGCCCTCGGGCGATCAACAGACATGAACAGGAAC
AGATTAGTCGGCTATTAGAGAAAGGCCATCCTCGGCAGCAACTAGCTATT
ATTTTTGGTATTGGCGTATCTACCTTATACAGATATTTTCCGGCAAGCCG
TATAAAAAAACGAATGAATAGGCCTGCTGCAAACGACGAAAACTACGCTT
TAGTAGCTTA

BioBrick Suffix: There is no T spacer between the insert and the SpeI site. The T spacer between the SpeI and the NotI sites should be an A. The last C of the NotI site is not conserved with the initial C from the PstI site. The BB suffix currently has this sequence for the NotI and PstI sites GCGGCCGcCTGCAG But it should have been: GCGGCCGCTGCAG -ACTAGTTGCGGCCGCCTGCAG





We compared our BioBricks with those from Tom Knight's paper, Idempotent Vector Design for Standard Assembly of Biobricks. As seen below

BioBricks from paper.png

Source

Salmonella typhimurium and the the Hin part without LVA.

References

Knight, Tom. Idempotent Vector Design for Standard Assembly of Biobricks