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Key Documents

G0673

Sigma-Aldrich

GSK4112

≥98% (HPLC)

Synonym(s):

1,1-Dimethylethyl N-[(4-chlorophenyl)methyl]-N-[(5-nitro-2-thienyl)methyl])glycinate, SR6452

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About This Item

Empirical Formula (Hill Notation):
C18H21ClN2O4S
CAS Number:
Molecular Weight:
396.89
MDL number:
UNSPSC Code:
12352200
PubChem Substance ID:
NACRES:
NA.77

Assay

≥98% (HPLC)

form

powder

color

off-white to tan

solubility

DMSO: >20 mg/mL

originator

GlaxoSmithKline

storage temp.

2-8°C

SMILES string

CC(C)(C)OC(=O)CN(Cc1ccc(Cl)cc1)Cc2ccc(s2)[N+]([O-])=O

InChI

1S/C18H21ClN2O4S/c1-18(2,3)25-17(22)12-20(10-13-4-6-14(19)7-5-13)11-15-8-9-16(26-15)21(23)24/h4-9H,10-12H2,1-3H3

InChI key

WYSLOKHVFKLWOU-UHFFFAOYSA-N

Biochem/physiol Actions

GSK4112 is a rev-erbα, (orphan nuclear receptor NR1D1) agonist, the first agent able to reset the circadian clock in a phase-dependent manner. Rev-erbα impacts the precision of the circadian clock by repressing target gene activities with the help of a nuclear receptor co-repressor complex (NCoR) and HDAC3. GSK4112 competes with heme (rev-erb′s natural ligand) and enhances co-repressor complex recruitment and thus, repression of transcription. suggests that pharmacological modulation through Rev-erb may provide new routes to treat metabolic diseases, especially disorders of adipogenesis regulated by rev-erba.

Features and Benefits

This compound is a featured product for Gene Regulation research. Click here to discover more featured Gene Regulation products. Learn more about bioactive small molecules for other areas of research at sigma.com/discover-bsm.
This compound was developed by GlaxoSmithKline. To browse the list of other pharma-developed compounds and Approved Drugs/Drug Candidates, click here.

Pictograms

Health hazardCorrosion

Signal Word

Danger

Hazard Statements

Hazard Classifications

Eye Dam. 1 - Resp. Sens. 1

Storage Class Code

11 - Combustible Solids

WGK

WGK 1

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable


Certificates of Analysis (COA)

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Norimitsu Morioka et al.
Brain, behavior, and immunity, 78, 116-130 (2019-01-27)
The orphan nuclear receptors REV-ERBα and REV-ERBβ (REV-ERBs) are crucial in the regulation of inflammatory-related gene transcription in astroglioma cells, but their role in nociceptive transduction has yet to be elaborated. Spinal dorsal horn astrocytes contribute to the maintenance of
Dong-Kai Guo et al.
Acta pharmacologica Sinica, 40(1), 26-34 (2018-06-29)
REV-ERBα, the NR1D1 (nuclear receptor subfamily 1, group D, member 1) gene product, is a dominant transcriptional silencer that represses the expression of genes involved in numerous physiological functions, including circadian rhythm, inflammation, and metabolism, and plays a crucial role
Guiyan Chu et al.
International journal of molecular sciences, 20(18) (2019-09-25)
Proliferation and apoptosis are important physiological processes of preadipocytes. Rev-erbα is a circadian clock gene, and its activity contributes to several physiological processes in various cells. Previous studies demonstrated that Rev-erbα promotes preadipocyte differentiation, but a role of Rev-erbα on
Kayoko Ishimaru et al.
International journal of molecular sciences, 20(24) (2019-12-19)
The cell-autonomous circadian clock regulates IgE- and IL-33-mediated mast cell activation, both of which are key events in the development of allergic diseases. Accordingly, clock modifiers could be used to treat allergic diseases, as well as many other circadian-related diseases
Shuai Wang et al.
Nature communications, 9(1), 4246-4246 (2018-10-14)
The roles of Rev-erbα and circadian clock in colonic inflammation remain unclarified. Here we show colon clock genes (including Rev-erbα) are dysregulated in mice with DSS-induced colitis. In turn, disruption of the circadian clock exacerbates experimental colitis. Rev-erbα-deficient mice are

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We offer a variety of small molecule research tools, such as transcription factor modulators, inhibitors of chromatin modifying enzymes, and agonists/antagonists for target identification and validation in gene regulation research; a selection of these research tools is shown below.

We offer a variety of small molecule research tools, such as transcription factor modulators, inhibitors of chromatin modifying enzymes, and agonists/antagonists for target identification and validation in gene regulation research; a selection of these research tools is shown below.

We offer a variety of small molecule research tools, such as transcription factor modulators, inhibitors of chromatin modifying enzymes, and agonists/antagonists for target identification and validation in gene regulation research; a selection of these research tools is shown below.

We offer a variety of small molecule research tools, such as transcription factor modulators, inhibitors of chromatin modifying enzymes, and agonists/antagonists for target identification and validation in gene regulation research; a selection of these research tools is shown below.

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