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R3629

Sigma-Aldrich

Ribonucleic acid diethylaminoethanol salt

Type IX

Synonyme(s) :

Ribonucleic acid from torula yeast, RNA

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About This Item

Numéro CAS:
Numéro MDL:
Code UNSPSC :
41106305
Nomenclature NACRES :
NA.51

Type

Type IX

Température de stockage

2-8°C

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Application

Ribonucleic acid (RNA) from torula yeast may be used as a substrate for studying ribonuclease activities of enzymes such as ribonuclease-A, ribonuclease T1 (RNAase) and bougainvillea xbuttiana antiviral protein 1 (BBAP1).

Code de la classe de stockage

11 - Combustible Solids

Classe de danger pour l'eau (WGK)

WGK 3

Point d'éclair (°F)

Not applicable

Point d'éclair (°C)

Not applicable

Équipement de protection individuelle

Eyeshields, Gloves, type N95 (US)


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Guo-Liang Chew et al.
Development (Cambridge, England), 140(13), 2828-2834 (2013-05-24)
Large-scale genomics and computational approaches have identified thousands of putative long non-coding RNAs (lncRNAs). It has been controversial, however, as to what fraction of these RNAs is truly non-coding. Here, we combine ribosome profiling with a machine-learning approach to validate
Giulia Biffi et al.
Nature chemistry, 6(1), 75-80 (2013-12-19)
Following extensive evidence for the formation of four-stranded DNA G-quadruplex structures in vitro, DNA G-quadruplexes have been observed within human cells. Although chemically distinct, RNA can also fold in vitro into G-quadruplex structures that are highly stable because of the
Lisa Hui et al.
Obstetrics and gynecology, 121(6), 1248-1254 (2013-07-03)
To identify the tissue expression patterns and biological pathways enriched in term amniotic fluid cell-free fetal RNA by comparing functional genomic analyses of term and second-trimester amniotic fluid supernatants. This was a prospective whole genome microarray study comparing eight amniotic
Yvonne Tay et al.
Nature, 505(7483), 344-352 (2014-01-17)
Recent reports have described an intricate interplay among diverse RNA species, including protein-coding messenger RNAs and non-coding RNAs such as long non-coding RNAs, pseudogenes and circular RNAs. These RNA transcripts act as competing endogenous RNAs (ceRNAs) or natural microRNA sponges
Yue Wan et al.
Nature, 505(7485), 706-709 (2014-01-31)
In parallel to the genetic code for protein synthesis, a second layer of information is embedded in all RNA transcripts in the form of RNA structure. RNA structure influences practically every step in the gene expression program. However, the nature

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