Date published: 2025-12-21

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LOC645323 Activators

The term LOC645323 Activators suggests a theoretical class of chemical compounds that, within a designated scientific framework, are understood to bind to and enhance the activity of a protein encoded by a genetic sequence referred to as LOC645323. Typically, the LOC prefix is used as a placeholder in genomic nomenclature, indicating a locus or specific region within the genome that has been identified but not yet fully characterized in terms of its genetic content or the biological function of its products.

In an exploration of LOC645323 Activators, scientists would employ a diverse set of experimental strategies to identify and characterize these compounds. Initial steps would likely involve the development of assays capable of quantitatively measuring the activity of the LOC645323 protein, which would be necessary for the screening and evaluation of potential activating compounds. Such assays might involve monitoring the conversion of substrates to products via spectroscopic methods, changes in binding affinity using techniques such as surface plasmon resonance, or alterations in ion flux if the protein were part of an ion channel complex. Following the identification of candidate molecules, detailed kinetic analyses would be conducted to determine the precise nature of the activation, such as increases in the rate of catalysis or changes in substrate affinity. Further investigative work would focus on the interaction between these activators and the LOC645323 protein through structural studies. Advanced techniques such as X-ray crystallography, cryo-electron microscopy, or nuclear magnetic resonance (NMR) spectroscopy would be employed to determine the three-dimensional structures of the protein with and without the activator bound, providing a molecular-level understanding of the activation mechanism. Complementarily, computational methods including molecular docking and dynamics simulations would be valuable in predicting how these activators might interact with the protein and to explore potential effects on the protein's function and structure. Through such detailed and comprehensive investigations, the chemical and biological properties of the LOC645323 Activators could be thoroughly characterized.

SEE ALSO...

Items 1 to 10 of 11 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

5-Aza-2′-Deoxycytidine

2353-33-5sc-202424
sc-202424A
sc-202424B
25 mg
100 mg
250 mg
$214.00
$316.00
$418.00
7
(1)

This compound inhibits DNA methyltransferases, potentially demethylating the MIR9-2 host gene promoter and upregulating its expression.

Suberoylanilide Hydroxamic Acid

149647-78-9sc-220139
sc-220139A
100 mg
500 mg
$130.00
$270.00
37
(2)

As an HDAC inhibitor, vorinostat can relax chromatin structure and may promote transcription of genes, including microRNA host genes.

Genistein

446-72-0sc-3515
sc-3515A
sc-3515B
sc-3515C
sc-3515D
sc-3515E
sc-3515F
100 mg
500 mg
1 g
5 g
10 g
25 g
100 g
$26.00
$92.00
$120.00
$310.00
$500.00
$908.00
$1821.00
46
(1)

Genistein is a phytoestrogen that can act as an epigenetic modulator, potentially affecting microRNA expression.

Resveratrol

501-36-0sc-200808
sc-200808A
sc-200808B
100 mg
500 mg
5 g
$60.00
$185.00
$365.00
64
(2)

Resveratrol is known to have epigenetic modulating activity and may upregulate miRNA expression through histone modifications.

(−)-Epigallocatechin Gallate

989-51-5sc-200802
sc-200802A
sc-200802B
sc-200802C
sc-200802D
sc-200802E
10 mg
50 mg
100 mg
500 mg
1 g
10 g
$42.00
$72.00
$124.00
$238.00
$520.00
$1234.00
11
(1)

This green tea polyphenol can modulate epigenetic marks and might influence the expression of miRNAs.

Sodium Butyrate

156-54-7sc-202341
sc-202341B
sc-202341A
sc-202341C
250 mg
5 g
25 g
500 g
$30.00
$46.00
$82.00
$218.00
19
(3)

As a HDAC inhibitor, sodium butyrate may increase histone acetylation and could enhance the transcription of microRNA host genes.

D,L-Sulforaphane

4478-93-7sc-207495A
sc-207495B
sc-207495C
sc-207495
sc-207495E
sc-207495D
5 mg
10 mg
25 mg
1 g
10 g
250 mg
$150.00
$286.00
$479.00
$1299.00
$8299.00
$915.00
22
(1)

Sulforaphane is known to affect epigenetic regulation and may modulate microRNA expression patterns.

Curcumin

458-37-7sc-200509
sc-200509A
sc-200509B
sc-200509C
sc-200509D
sc-200509F
sc-200509E
1 g
5 g
25 g
100 g
250 g
1 kg
2.5 kg
$36.00
$68.00
$107.00
$214.00
$234.00
$862.00
$1968.00
47
(1)

Curcumin could alter gene expression through its effect on transcription factors and histone modifications.

Retinoic Acid, all trans

302-79-4sc-200898
sc-200898A
sc-200898B
sc-200898C
500 mg
5 g
10 g
100 g
$65.00
$319.00
$575.00
$998.00
28
(1)

Retinoic acid can regulate gene transcription and may affect miRNA processing or expression levels.

Mecobalamin

13422-55-4sc-211781
10 mg
$300.00
(0)

Methylcobalamin is involved in methylation processes and could influence the epigenetic state of miRNA host genes.