Date published: 2025-12-6

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Gene Regulation Reagents

Santa Cruz Biotechnology now offers a broad range of gene regulation reagents for use in various applications. Gene regulation reagents are essential tools in scientific research, enabling the study of the complex mechanisms that control gene expression. These reagents include transcription factors, DNA-binding proteins, histone modifiers, and RNA interference tools, which are critical for investigating how genes are turned on and off in different cellular contexts. Researchers utilize gene regulation reagents to dissect the pathways and networks that govern cellular functions, differentiation, and development. By manipulating gene expression, scientists can explore the roles of specific genes in various biological processes, understand the regulatory elements that control these genes, and identify the factors that contribute to normal and abnormal gene expression. Gene regulation reagents are also employed in functional genomics to create knockdown or overexpression models, facilitating the study of gene function and the identification of new fundemental targets. Additionally, these reagents are pivotal in epigenetics research, where they help explain the modifications that regulate chromatin structure and gene accessibility. By providing a comprehensive selection of high-quality gene regulation reagents, Santa Cruz Biotechnology supports advanced research in molecular biology, genetics, and biotechnology, empowering scientists to achieve precise and reproducible results. These products drive forward our understanding of gene regulation and its implications for health and disease. View detailed information on our available gene regulation reagents by clicking on the product name.

Items 81 to 90 of 113 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

2-Heptyl-3-hydroxyl-4-quinolone

108985-27-9sc-396649
25 mg
$192.00
(0)

2-Heptyl-3-hydroxyl-4-quinolone functions as a gene regulation reagent by engaging in specific molecular interactions with transcription factors and regulatory proteins. Its unique quinolone structure allows for π-π stacking and hydrogen bonding, facilitating the stabilization of protein-DNA complexes. This compound can influence signaling pathways by modulating the activity of enzymes involved in gene expression, thereby impacting cellular responses. Its lipophilic nature enhances membrane permeability, promoting efficient cellular uptake and interaction with intracellular targets.

DIF-1

111050-72-7sc-221541
sc-221541A
100 µg
500 µg
$64.00
$255.00
(0)

DIF-1 acts as a gene regulation reagent by selectively binding to specific transcriptional co-regulators, influencing gene expression dynamics. Its unique structural features enable it to disrupt protein-protein interactions, thereby altering the assembly of transcriptional complexes. Additionally, DIF-1 exhibits a propensity for forming stable complexes with chromatin, which can modulate epigenetic modifications. This compound's hydrophobic characteristics facilitate its diffusion across cellular membranes, enhancing its bioavailability for intracellular interactions.

tert-butyl 2-aminophenylcarbamate

146651-75-4sc-356014
sc-356014A
250 mg
1 g
$188.00
$380.00
(0)

Tert-butyl 2-aminophenylcarbamate functions as a gene regulation reagent by modulating the activity of transcription factors through competitive inhibition. Its unique amine and carbamate groups enable specific hydrogen bonding with target proteins, influencing their conformational states. This compound can also alter the recruitment of chromatin remodeling complexes, impacting gene accessibility. Its lipophilic nature promotes effective cellular uptake, allowing for significant intracellular regulatory effects.

LED209

245342-14-7sc-205368
sc-205368A
1 mg
5 mg
$18.00
$75.00
(0)

LED209 serves as a gene regulation reagent by selectively interacting with RNA polymerase, enhancing transcriptional activity. Its unique structure facilitates the formation of stable complexes with regulatory proteins, promoting specific gene expression profiles. The compound's ability to influence post-translational modifications of histones further modulates chromatin dynamics, thereby affecting gene accessibility. Additionally, its hydrophobic characteristics support membrane permeability, ensuring efficient cellular delivery and action.

Fmoc-L-Lys(Me2)-OH*HCl

252049-10-8sc-294919
250 mg
$300.00
(0)

Fmoc-L-Lys(Me2)-OH*HCl functions as a gene regulation reagent by acting as a versatile building block in peptide synthesis, enabling the incorporation of lysine residues into peptides that can modulate gene expression. Its unique Fmoc protecting group allows for selective deprotection under mild conditions, facilitating precise control over peptide assembly. The dimethylated lysine side chain enhances interactions with epigenetic modifiers, influencing chromatin structure and gene accessibility.

CASIN

425399-05-9sc-397016
10 mg
$460.00
1
(0)

CASIN serves as a potent gene regulation reagent by selectively inhibiting histone deacetylases, thereby promoting an open chromatin state. Its unique structure allows for specific binding to the active site of these enzymes, altering their kinetics and enhancing acetylation levels on histones. This modulation of histone acetylation can lead to significant changes in gene expression patterns, making CASIN a valuable tool for studying epigenetic regulation.

N-3-oxo-hexadec-11Z-enoyl-L-Homoserine lactone

479050-91-4sc-221977
sc-221977A
1 mg
5 mg
$48.00
$159.00
(0)

N-3-oxo-hexadec-11Z-enoyl-L-Homoserine lactone functions as a gene regulation reagent by engaging in quorum sensing mechanisms, facilitating intercellular communication in bacterial populations. Its unique acyl homoserine lactone structure enables it to bind to specific receptors, triggering signal transduction pathways that influence gene expression. This compound's ability to modulate transcriptional responses highlights its role in regulating diverse biological processes at the genetic level.

N-3-oxo-tetradec-7Z-enoyl-L-Homoserine lactone

482598-46-9sc-205401
sc-205401A
1 mg
5 mg
$29.00
$129.00
(0)

N-3-oxo-tetradec-7Z-enoyl-L-Homoserine lactone acts as a gene regulation reagent by participating in bacterial quorum sensing, where it serves as a signaling molecule. Its distinctive acyl chain length and unsaturation allow for specific interactions with LuxR-type receptors, leading to the activation of target genes. This compound's precise structural features influence its binding affinity and kinetics, ultimately shaping the dynamics of gene expression and cellular behavior in microbial communities.

UNC 0224

1197196-48-7sc-362816
sc-362816A
10 mg
50 mg
$194.00
$816.00
(0)

UNC 0224 serves as a specialized gene regulation reagent by modulating the activity of specific transcription factors. Its unique molecular design enables it to interact with regulatory elements in DNA, influencing gene expression patterns. By stabilizing or destabilizing protein-DNA complexes, UNC 0224 can alter transcriptional dynamics. Additionally, its favorable solubility properties enhance its accessibility to cellular components, promoting effective engagement with target pathways and influencing gene regulatory networks.

Staurosporine Solution in Ethyl Acetate

62996-74-1sc-360258
100 µg
$92.00
4
(2)

Staurosporine Solution in Ethyl Acetate functions as a potent gene regulation reagent by inhibiting protein kinases, which play critical roles in various signaling pathways. Its unique structure allows for selective binding to ATP-binding sites, disrupting phosphorylation processes. This interference alters downstream gene expression, affecting cellular responses. The compound's solubility in ethyl acetate enhances its bioavailability, facilitating its interaction with target proteins and influencing cellular signaling cascades.