G8129
Guanosine 2′:3′-cyclic monophosphate sodium salt
~97%
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About This Item
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Assay
~97%
solubility
H2O: soluble
storage temp.
−20°C
SMILES string
[Na].NC1=NC(=O)c2ncn(C3OC(CO)C4OP(O)(=O)OC34)c2N1
InChI
1S/C10H12N5O7P.Na.H/c11-10-13-7-4(8(17)14-10)12-2-15(7)9-6-5(3(1-16)20-9)21-23(18,19)22-6;;/h2-3,5-6,9,16H,1H2,(H,18,19)(H3,11,13,14,17);;
InChI key
HOTMPXGKAYLTBL-UHFFFAOYSA-N
Caution
Do not confuse with the common guanosine 2′- & 3′- monophosphate (mixed isomers).
Storage Class Code
13 - Non Combustible Solids
WGK
WGK 3
Flash Point(F)
Not applicable
Flash Point(C)
Not applicable
Personal Protective Equipment
dust mask type N95 (US), Eyeshields, Gloves
Certificates of Analysis (COA)
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Biochemistry, 37(45), 15865-15876 (1998-12-08)
The electrostatic behavior of titrating groups in alpha-sarcin was investigated using 1H NMR spectroscopy. A total of 209 chemical shift titration curves corresponding to different protons in the molecule were determined over the pH range of 3.0-8.5. Nonlinear least-squares fits
Journal of bacteriology, 188(21), 7335-7343 (2006-10-20)
Multiple environmental cues have been shown to trigger biofilm detachment, the transition from surface-attached, highly organized communities known as biofilms to the motile lifestyle. The goal of this study was to identify a gene product involved in sensing environmental cues
Structure (London, England : 1993), 8(5), 527-540 (2000-05-10)
Bacterial signal recognition particle (SRP), consisting of 4.5S RNA and Ffh protein, plays an essential role in targeting signal-peptide-containing proteins to the secretory apparatus in the cell membrane. The 4.5S RNA increases the affinity of Ffh for signal peptides and
Molecular microbiology, 63(2), 429-442 (2007-01-24)
Cyclic di-GMP is a second messenger with a role in regulation of a range of cellular functions in diverse bacteria including the virulence of pathogens. Cellular levels of cyclic di-GMP are controlled through synthesis, catalysed by the GGDEF protein domain
Mutation research, 326(1), 71-82 (1995-01-01)
U5 snRNA can induce both transformation and chromosome aberrations of cells. The polypurine tract, GGAGAGGAA, of the RNA has been suggested to participate in both phenomena. In vitro transcription expected to give this polypurine oligoribonucleotide was associated with cleavage of
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