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EMU022451

Sigma-Aldrich

MISSION® esiRNA

targeting mouse Gata2

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About This Item

UNSPSC Code:
41105324
NACRES:
NA.51

description

Powered by Eupheria Biotech

product line

MISSION®

form

lyophilized powder

esiRNA cDNA target sequence

GCACCTGTTGTGCAAATTGTCAGACGACAACCACCACCTTATGGCGCCGGAACGCCAACGGGGACCCTGTGTGCAACGCCTGTGGCCTCTACTACAAGCTGCACAATGTTAACAGGCCACTGACCATGAAGAAGGAAGGGATCCAGACCCGGAATCGGAAGATGTCCAGCAAATCCAAGAAGAGCAAGAAAGGGGCTGAATGTTTCGAGGAGCTCTCCAAGTGCATGCAAGAGAAGTCACCGCCCTTCAGTGCGGCTGCCCTGGCTGGACACATGGCACCTGTGGGACACCTCCCACCTTTTAGTCACTCTGGACACATCCTACCCACGCCCACGCCTATCCACCCTTCCTCCAGTCTCTCTTTTGGCCACCCCCACCCGTCCAGCATGGTGACTGCCATGGGCTAGGCAAGCCTCCCACTGGACAGACATGGACATCAAGGGTGGT

Ensembl | mouse accession no.

NCBI accession no.

shipped in

ambient

storage temp.

−20°C

Gene Information

General description

MISSION® esiRNA are endoribonuclease prepared siRNA. They are a heterogeneous mixture of siRNA that all target the same mRNA sequence. These multiple silencing triggers lead to highly-specific and effective gene silencing.

For additional details as well as to view all available esiRNA options, please visit SigmaAldrich.com/esiRNA.

Legal Information

MISSION is a registered trademark of Merck KGaA, Darmstadt, Germany

Storage Class

10 - Combustible liquids

flash_point_f

Not applicable

flash_point_c

Not applicable


Certificates of Analysis (COA)

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Song Shen et al.
Molecular pharmaceutics, 11(8), 2612-2622 (2014-02-14)
Synthetic lethal interaction provides a conceptual framework for the development of wiser cancer therapeutics. In this study, we exploited a therapeutic strategy based on the interaction between GATA binding protein 2 (GATA2) downregulation and the KRAS mutation status by delivering
Gaurang Trivedi et al.
Science translational medicine, 11(511) (2019-09-27)
Adult stem and progenitor cells are uniquely capable of self-renewal, and targeting this process represents a potential therapeutic opportunity. The early erythroid progenitor, burst-forming unit erythroid (BFU-E), has substantial self-renewal potential and serves as a key cell type for the
Takuya Yashiro et al.
PloS one, 10(9), e0137699-e0137699 (2015-09-12)
The transcription factor PU.1 is predominantly expressed in dendritic cells (DCs) and is essential for DC differentiation. Although there are several reports that PU.1 positively regulates the expression of DC-specific genes, whether PU.1 also has a suppressive effect on DCs

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