Regulatory
SP200

Part:BBa_K3889012

Designed by: Prameya Garge, Ashwin Sharma   Group: iGEM21_IISER-Tirupati_India   (2021-10-02)
Revision as of 02:33, 17 October 2021 by AshWinShaRma (Talk | contribs)


Bacillus subtilis Synthetic Promoter 200


This is a synthetically derived promoter sequence for the expression of genes in Bacillus subtilis.

Promoter

Sequence 5‘ → 3‘

Relative

activity wrt P43 of

GFP (%)

Standard

deviation

SP126

AAAAATTATAAAAATGTGTTGACAAAGGGGGTCCTGTATGTTATAATAGCTT

29.07

0.23

SP146

AAAAATAACAAAAACGTGTTGACAATAAAGATTAACCGTGATATAATTAAAT

40.39

0.69

SP200

AAAAATTAGAAAAATGTGTTGACACTCGGACGAAACAATGGTATAATGGCAA

76.82

0.9

Synthetic Promoters data from SP1-214[1]


Usage and Biology

SP126(BBa_K3889010), SP146(BBa_K3889011), SP200(BBa_K3889010) are a part of synthetic library promoters from Liu et al. (2018)[1]. These synthetic promoters are characterised to have constitutive expression, hence they can be used in general protein production. Since the library contains 214 synthetic promoters providing variability and robustness in expression, according to the system's need. All SP promoters have the following consensus sequences:


Based on this the promoters are as follows: T--IISER-Tirupati India--SP allignment.png


Modelling

We planned to use SP200 with BBa_K1351031 for gene expression of mf-Lon (BBa_K3889101).

Parameters used:

Rate of P22 production = 9218880/nM*day

Rate of P22 degradation = 1.69/day

T--IISER-Tirupati India--SP200.jpg


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
    COMPATIBLE WITH RFC[1000]


References

1. Liu, D., Mao, Z., Guo, J., Wei, L., Ma, H., Tang, Y., Chen, T., Wang, Z., & Zhao, X. (2018). Construction, Model-Based Analysis, and Characterization of a Promoter Library for Fine-Tuned Gene Expression in Bacillus subtilis. ACS Synthetic Biology, 7(7), 1785–1797. https://doi.org/10.1021/acssynbio.8b00115

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