产品名称
MISSION® esiRNA, targeting human GEMIN5
description
Powered by Eupheria Biotech
product line
MISSION®
form
lyophilized powder
esiRNA cDNA target sequence
CAAGGATGGCATAGTGGTGATAATTGACATCAGTAAGAAAGGAGAAGTTATTCATAGGCTTCGAGGCCATGATGATGAAATCCACTCCATAGCCTGGTGTCCCCTGCCTGGTGAAGATTGTTTATCTATAAACCAAGAGGAAACTTCAGAAGAAGCTGAAATTACCAACGGGAATGCTGTAGCACAAGCTCCAGTAACAAAAGGTTGCTACTTAGCCACTGGAAGCAAAGATCAAACCATTCGAATCTGGAGCTGTTCTAGAGGCCGAGGGGTGATGATTTTGAAATTGCCCTTTCTGAAGAGAAGAGGAGGGGGTATAGACCCAACTGTTAAAGAGCGCCTTTGGTTGACACTCCATTGGCCCAGCAATCAACCAACACAGCTGGTATCTAGCTGTTTTGGAGGTGAACTGTTGCAATGGGATCTCACTCAATCTTGGAGACGGAAATACACCC
Ensembl | human accession no.
NCBI accession no.
shipped in
ambient
storage temp.
−20°C
Quality Level
Gene Information
human ... GEMIN5(25929), GEMIN5(25929)
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.
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
存储类别
10 - Combustible liquids
flash_point_f
Not applicable
flash_point_c
Not applicable
法规信息
新产品
此项目有
Javier Fernandez-Chamorro et al.
Nucleic acids research, 42(9), 5742-5754 (2014-03-07)
Ribonucleic acid (RNA)-binding proteins are key players of gene expression control. We have shown that Gemin5 interacts with internal ribosome entry site (IRES) elements and modulates initiation of translation. However, little is known about the RNA-binding sites of this protein.
Eileen Workman et al.
The Journal of biological chemistry, 290(25), 15662-15669 (2015-04-26)
Reduced expression of SMN causes spinal muscular atrophy, a severe neurodegenerative disease. Despite the importance of maintaining SMN levels, relatively little is known about the mechanisms by which SMN levels are regulated. We show here that Gemin5, the snRNA-binding protein
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