Date published: 2026-5-17

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LOC100041317 Activators

The chemical class designated as LOC100041317 Activators, also known under the alias predicted gene 3269 activators, encompasses a diverse array of compounds that specifically target and modulate the activity of the LOC100041317 gene. This gene is part of the extensive genomic landscape that underpins a multitude of cellular functions and complex biological processes essential for organismal development and homeostasis. The activators within this class are characterized by their ability to influence the expression of LOC100041317, thereby impacting its functional roles within cellular and physiological contexts. The interaction between these activators and the LOC100041317 gene involves a series of sophisticated molecular mechanisms, which may include direct interactions with the gene's regulatory sequences, modulation of transcription factor dynamics, or alterations in the chromatin configuration, ultimately leading to changes in gene expression levels and activity.

Investigating the impact and mechanisms of action of LOC100041317 activators necessitates an in-depth understanding of molecular genetics and the regulatory networks governing gene expression. By affecting the activity of LOC100041317, these activators can bring about significant changes in the cellular processes that the gene influences, potentially impacting transcriptional regulation, mRNA processing, and the synthesis of proteins pivotal for various cellular functions. This modulation is crucial for elucidating the role of LOC100041317 in cellular physiology and its interactions within the broader genetic regulatory networks. The study of LOC100041317 activators thus provides valuable insights into the complex mechanisms of gene regulation, shedding light on the intricate interplay between genetic elements and the molecular machinery that controls their expression, enhancing our understanding of the fundamental processes that govern cellular function and contribute to the maintenance of biological systems.

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Cholecalciferol

67-97-0sc-205630
sc-205630A
sc-205630B
1 g
5 g
10 g
$71.00
$163.00
$296.00
2
(1)

Vitamin D3 regulates gene expression through the vitamin D receptor, affecting calcium homeostasis and cell proliferation pathways.

(−)-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
$43.00
$73.00
$126.00
$243.00
$530.00
$1259.00
11
(1)

EGCG, a component of green tea, has been shown to modulate several signal transduction pathways, potentially influencing gene transcription.

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
$37.00
$69.00
$109.00
$218.00
$239.00
$879.00
$1968.00
47
(1)

Curcumin can modulate transcription factors and has been shown to affect gene expression related to inflammatory pathways.

Valproic Acid

99-66-1sc-213144
10 g
$87.00
9
(1)

Sodium valproate is an HDAC inhibitor that can induce histone hyperacetylation, affecting chromatin structure and gene expression.

Diethylstilbestrol

56-53-1sc-204720
sc-204720A
sc-204720B
sc-204720C
sc-204720D
1 g
5 g
25 g
50 g
100 g
$71.00
$287.00
$547.00
$1098.00
$2185.00
3
(1)

Diethylstilbestrol binds to estrogen receptors and can modulate the expression of estrogen-responsive genes.

Kaempferol

520-18-3sc-202679
sc-202679A
sc-202679B
25 mg
100 mg
1 g
$99.00
$216.00
$510.00
11
(1)

Kaempferol is a flavonoid that can affect cellular signaling pathways and potentially influence gene expression.

Mycophenolic acid

24280-93-1sc-200110
sc-200110A
100 mg
500 mg
$69.00
$266.00
8
(1)

Mycophenolic acid can inhibit inosine monophosphate dehydrogenase, potentially altering lymphocyte proliferation and gene expression.

Nicotinamide

98-92-0sc-208096
sc-208096A
sc-208096B
sc-208096C
100 g
250 g
1 kg
5 kg
$44.00
$66.00
$204.00
$831.00
6
(1)

Niacinamide, a form of vitamin B3, can modulate cell signaling and has been shown to influence gene expression patterns.

Chlorpromazine

50-53-3sc-357313
sc-357313A
5 g
25 g
$61.00
$110.00
21
(1)

Chlorpromazine affects multiple neurotransmitter systems and could potentially modulate gene expression in related pathways.