Date published: 2025-10-15

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granzyme H Inhibitors

Granzyme H inhibitors are a class of chemical compounds that share the ability to bind to and inhibit the function of granzyme H, a serine protease enzyme. These inhibitors are recognized for their diverse mechanisms of action, which involve engaging with the enzyme's active site or crucial regions to prevent the cleavage of substrates. Many of these inhibitors work by forming a covalent bond with the serine residue within the active site, a process that results in the irreversible inactivation of the enzyme. This bond formation can effectively prevent the enzyme from engaging in its normal catalytic cycle, rendering it unable to process its peptide substrates. Other inhibitors in this class operate through reversible binding, which allows them to attach to the active site and subsequently dissociate, offering a more controlled form of enzyme regulation. The diversity of molecular structures found within the granzyme H inhibitor class allows for various interactions with the enzyme. Some inhibitors mimic the structure of the enzyme's natural substrates, thereby competing with these substrates for binding to the active site. This competitive inhibition is an essential mechanism by which these inhibitors exert their effects. Others act by binding to regions of the enzyme that are crucial for substrate recognition or catalysis, which can alter the shape of the enzyme and prevent it from functioning properly. Additionally, certain inhibitors have been identified that work by mechanisms that are not purely based on active site binding. These inhibitors may interact with allosteric sites on the enzyme, inducing conformational changes that can reduce or abrogate enzymatic activity without directly blocking the active site. The multiplicity of inhibitory strategies employed by these compounds reflects a sophisticated level of interaction with granzyme H, enabling fine-tuned control over its proteolytic activity. This class of inhibitors showcases the intricate dance between small molecule inhibitors and their target enzymes, with the inhibitors often being designed or selected for their capacity to specifically engage with distinct features of the granzyme H structure.

Items 1 to 10 of 11 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

3,4 Dichloroisocoumarin

51050-59-0sc-3502
5 mg
$246.00
8
(1)

3,4-Dichloroisocoumarin acts as a selective inhibitor of granzyme H, exhibiting unique molecular interactions that disrupt its enzymatic activity. This compound engages in specific binding with the active site of granzyme H, altering its reaction kinetics and effectively modulating apoptotic signaling pathways. Its distinct structural features enhance its affinity for granzyme H, providing insights into protease regulation and cellular processes.

AEBSF hydrochloride

30827-99-7sc-202041
sc-202041A
sc-202041B
sc-202041C
sc-202041D
sc-202041E
50 mg
100 mg
5 g
10 g
25 g
100 g
$50.00
$120.00
$420.00
$834.00
$1836.00
$4896.00
33
(1)

AEBSF covalently binds to the serine residue in the active site of serine proteases, thereby irreversibly inhibiting their enzymatic activity, and could possibly inhibit granzyme H by this mechanism.

Phenylmethylsulfonyl Fluoride

329-98-6sc-3597
sc-3597A
1 g
100 g
$50.00
$683.00
92
(1)

PMSF covalently modifies the active site serine residue of serine proteases, leading to irreversible inactivation. This action could possibly inhibit granzyme H.

Aprotinin

9087-70-1sc-3595
sc-3595A
sc-3595B
10 mg
100 mg
1 g
$110.00
$400.00
$1615.00
51
(2)

Aprotinin is a small protein that inhibits serine proteases by binding tightly to their active sites in a reversible manner, which could possibly inhibit granzyme H by preventing substrate access.

Gabexate mesylate

56974-61-9sc-215066
5 mg
$100.00
(0)

Gabexate mesylate acts as a competitive inhibitor and could possibly inhibit granzyme H by binding to its active site, thereby mimicking the transition state of peptide bond hydrolysis.

Leupeptin hemisulfate

103476-89-7sc-295358
sc-295358A
sc-295358D
sc-295358E
sc-295358B
sc-295358C
5 mg
25 mg
50 mg
100 mg
500 mg
10 mg
$72.00
$145.00
$265.00
$489.00
$1399.00
$99.00
19
(3)

Leupeptin reversibly interacts with the active site serine of serine proteases and could possibly inhibit granzyme H by blocking the enzyme's ability to engage its substrates.

E-64

66701-25-5sc-201276
sc-201276A
sc-201276B
5 mg
25 mg
250 mg
$275.00
$928.00
$1543.00
14
(0)

Although E-64 is a cysteine protease inhibitor, there is a theoretical possibility that it could inhibit granzyme H if it can interact with the serine residue in the active site.

Chymostatin

9076-44-2sc-202541
sc-202541A
sc-202541B
sc-202541C
sc-202541D
5 mg
10 mg
25 mg
50 mg
100 mg
$153.00
$255.00
$627.00
$1163.00
$2225.00
3
(1)

Chymostatin could possibly inhibit granzyme H by reversibly binding to serine proteases, though it is typically more specific for chymotrypsin-like enzymes.

Bestatin

58970-76-6sc-202975
10 mg
$128.00
19
(3)

Bestatin is an aminopeptidase inhibitor that could possibly inhibit granzyme H by competing with substrates at the active site if there is structural compatibility.

Amiloride

2609-46-3sc-337527
1 g
$290.00
7
(1)

Amiloride could possibly inhibit granzyme H, as it is known to modulate various enzymes and channels, despite not being a typical serine protease inhibitor.