Date published: 2026-3-31

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H2AL2 Inhibitors

H2AL2 inhibitors constitute a specific class of chemical compounds designed to modulate the activity of the H2AL2 protein. H2AL2, also known as histocompatibility 2, A region locus 2, is a protein component of the major histocompatibility complex (MHC) system, particularly in mice. The MHC system plays a pivotal role in the immune response by facilitating the presentation of antigenic peptides to T cells, allowing the immune system to recognize and respond to foreign pathogens effectively. H2AL2, like other MHC molecules, is intricately involved in the complex process of antigen presentation, which is a fundamental mechanism that enables the body to initiate immune responses against infections. The development of H2AL2 inhibitors is primarily motivated by the goal of selectively interacting with the H2AL2 protein, potentially influencing its antigen-presenting activity and impacting immune recognition processes.

H2AL2 inhibitors typically consist of small molecules or chemical compounds that are precisely engineered to bind to H2AL2, targeting either its active site or allosteric sites. This interaction can lead to the modulation of H2AL2's behavior, potentially affecting its ability to present antigenic peptides to T cells and, consequently, influencing the immune response against foreign antigens. Researchers are dedicated to unraveling the molecular mechanisms and functions of H2AL2 within the MHC system, aiming to gain insights into the complex immune recognition processes. The development of H2AL2 inhibitors represents an ongoing and dynamic area of research within the fields of immunology and molecular pharmacology, contributing significantly to our understanding of the immune system's functioning and its role in detecting and responding to foreign antigens.

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Items 1 to 10 of 11 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Hydroxyurea

127-07-1sc-29061
sc-29061A
5 g
25 g
$78.00
$260.00
18
(1)

An inhibitor of ribonucleotide reductase that can lead to reduced DNA synthesis, potentially affecting histone gene expression due to altered cell cycle dynamics.

Chloroquine

54-05-7sc-507304
250 mg
$69.00
2
(0)

Known to intercalate into DNA and RNA, it can potentially disrupt transcriptional regulation, possibly impacting histone gene expression.

Flavopiridol

146426-40-6sc-202157
sc-202157A
5 mg
25 mg
$78.00
$259.00
41
(3)

A cyclin-dependent kinase inhibitor that may affect cell cycle progression and, subsequently, histone gene regulation.

1-β-D-Arabinofuranosylcytosine

147-94-4sc-201628
sc-201628A
sc-201628B
sc-201628C
sc-201628D
1 g
5 g
25 g
100 g
250 g
$150.00
$263.00
$518.00
$731.00
$1461.00
1
(1)

A nucleoside analog that inhibits DNA polymerase, which could lead to reduced replication and transcription of histone genes.

Triptolide

38748-32-2sc-200122
sc-200122A
1 mg
5 mg
$90.00
$204.00
13
(1)

A diterpene triepoxide that has been shown to inhibit the transcription of various genes and may affect histone gene expression.

Actinomycin D

50-76-0sc-200906
sc-200906A
sc-200906B
sc-200906C
sc-200906D
5 mg
25 mg
100 mg
1 g
10 g
$74.00
$243.00
$731.00
$2572.00
$21848.00
53
(3)

A compound that intercalates into DNA, inhibiting RNA polymerase and potentially downregulating histone gene transcription.

Mitoxantrone

65271-80-9sc-207888
100 mg
$285.00
8
(1)

An anthracenedione that intercalates into DNA and inhibits topoisomerase II, which may reduce transcription of histone genes.

Ellipticine

519-23-3sc-200878
sc-200878A
10 mg
50 mg
$145.00
$569.00
4
(1)

A DNA intercalator that can inhibit topoisomerase II, potentially downregulating histone gene expression by affecting DNA transcription.

Camptothecin

7689-03-4sc-200871
sc-200871A
sc-200871B
50 mg
250 mg
100 mg
$58.00
$186.00
$94.00
21
(2)

A topoisomerase I inhibitor that can lead to reduced transcription and may downregulate histone gene expression.

Aphidicolin

38966-21-1sc-201535
sc-201535A
sc-201535B
1 mg
5 mg
25 mg
$84.00
$306.00
$1104.00
30
(3)

A tetracyclic diterpene that specifically inhibits DNA polymerase alpha and delta, potentially affecting replication and histone gene expression.