Smp1p gene transcriptions: Difference between revisions

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# inverse positive strand, positive direction, looking for GAT(A/T)(A/T)(A/T)(A/T)ATCATCA, 0.
# inverse positive strand, positive direction, looking for GAT(A/T)(A/T)(A/T)(A/T)ATCATCA, 0.
# inverse negative strand, positive direction, looking for GAT(A/T)(A/T)(A/T)(A/T)ATCATCA, 0.
# inverse negative strand, positive direction, looking for GAT(A/T)(A/T)(A/T)(A/T)ATCATCA, 0.
==Acknowledgements==
The content on this page was first contributed by: Henry A. Hoff.


==See also==
==See also==
{{div col|colwidth=20em}}
{{div col|colwidth=20em}}
* [[A1BG gene transcription core promoters]]
* [[A1BG gene transcriptions]]
* [[A1BG regulatory elements and regions]]
* [[A1BG response element gene transcriptions]]
* [[A1BG response element negative results]]
* [[A1BG response element positive results]]
* [[Complex locus A1BG and ZNF497]]
* [[Complex locus A1BG and ZNF497]]
* [[Transcription factor]]
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{{Div col end}}


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==External links==
==External links==
* [http://www.genome.jp/ GenomeNet KEGG database]
* [http://www.ncbi.nlm.nih.gov/sites/entrez?db=gene Home - Gene - NCBI]
* [http://www.ncbi.nlm.nih.gov/sites/gquery NCBI All Databases Search]
* [http://www.ncbi.nlm.nih.gov/ncbisearch/ NCBI Site Search]
* [http://www.ncbi.nlm.nih.gov/pccompound PubChem Public Chemical Database]


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[[Category:Resources last modified in September 2020]]
[[Category:Resources last modified in February 2021]]

Revision as of 00:21, 26 February 2021

Associate Editor(s)-in-Chief: Henry A. Hoff

Human genes

Consensus sequences

The upstream activating sequence (UAS) for Smp1p is 5'-ACTACTA(T/A)4TAG-3' in the promoters of STL1 and CWP1 regarding osmotic stress response [68].[1]

SMP samplings

Copying the apparent consensus sequence for SMP (ACTACTA) and putting it in "⌘F" finds none located between ZSCAN22 and none between ZNF497 and A1BG as can be found by the computer programs.

For the Basic programs testing consensus sequence ACTACTA(A/T)(A/T)(A/T)(A/T)TAG (starting with SuccessablesSMP.bas) written to compare nucleotide sequences with the sequences on either the template strand (-), or coding strand (+), of the DNA, in the negative direction (-), or the positive direction (+), the programs are, are looking for, and found:

  1. negative strand, negative direction, looking for ACTACTA(T/A)(T/A)(T/A)(T/A)TAG, 0.
  2. positive strand, negative direction, looking for ACTACTA(T/A)(T/A)(T/A)(T/A)TAG, 0.
  3. positive strand, positive direction, looking for ACTACTA(T/A)(T/A)(T/A)(T/A)TAG, 0.
  4. negative strand, positive direction, looking for ACTACTA(T/A)(T/A)(T/A)(T/A)TAG, 0.
  5. complement, negative strand, negative direction, looking for TGATGAT(A/T)(A/T)(A/T)(A/T)ATC, 0.
  6. complement, positive strand, negative direction, looking for TGATGAT(A/T)(A/T)(A/T)(A/T)ATC, 0.
  7. complement, positive strand, positive direction, looking for TGATGAT(A/T)(A/T)(A/T)(A/T)ATC, 0.
  8. complement, negative strand, positive direction, looking for TGATGAT(A/T)(A/T)(A/T)(A/T)ATC, 0.
  9. inverse complement, negative strand, negative direction, looking for CTA(A/T)(A/T)(A/T)(A/T)TAGTAGT, 0.
  10. inverse complement, positive strand, negative direction, looking for CTA(A/T)(A/T)(A/T)(A/T)TAGTAGT, 0.
  11. inverse complement, positive strand, positive direction, looking for CTA(A/T)(A/T)(A/T)(A/T)TAGTAGT, 0.
  12. inverse complement, negative strand, positive direction, looking for CTA(A/T)(A/T)(A/T)(A/T)TAGTAGT, 0.
  13. inverse negative strand, negative direction, looking for GAT(A/T)(A/T)(A/T)(A/T)ATCATCA, 0.
  14. inverse positive strand, negative direction, looking for GAT(A/T)(A/T)(A/T)(A/T)ATCATCA, 0.
  15. inverse positive strand, positive direction, looking for GAT(A/T)(A/T)(A/T)(A/T)ATCATCA, 0.
  16. inverse negative strand, positive direction, looking for GAT(A/T)(A/T)(A/T)(A/T)ATCATCA, 0.

Acknowledgements

The content on this page was first contributed by: Henry A. Hoff.

See also

References

  1. Hongting Tang, Yanling Wu, Jiliang Deng, Nanzhu Chen, Zhaohui Zheng, Yongjun Wei, Xiaozhou Luo, and Jay D. Keasling (6 August 2020). "Promoter Architecture and Promoter Engineering in Saccharomyces cerevisiae". Metabolites. 10 (8): 320–39. doi:10.3390/metabo10080320. PMID 32781665 Check |pmid= value (help). Retrieved 18 September 2020.

External links