Date published: 2026-5-4

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PYPAF7 Activators

PYPAF7 activators are a specific class of chemical compounds that play a pivotal role in the field of molecular biology and cellular signaling. These compounds are primarily characterized by their ability to modulate the activity of PYPAF7, also known as NOD-like receptor family pyrin domain-containing 7, which is a key protein involved in the innate immune system. PYPAF7, like other members of the NOD-like receptor (NLR) family, acts as a sensor for detecting various pathogenic microorganisms and cellular damage, initiating an inflammatory response when necessary. PYPAF7 activators, therefore, hold immense significance in the study of immune responses and the development of potential tools for manipulating immune pathways.

Chemically, PYPAF7 activators encompass a diverse range of molecules that interact with PYPAF7 or its associated signaling pathways. These activators may function by binding directly to PYPAF7, altering its conformation, and subsequently influencing downstream signaling events. Alternatively, they may impact other components of the NLRP3 inflammasome, a complex of proteins in which PYPAF7 plays a crucial role, to modulate its activity. Understanding the mechanisms by which PYPAF7 activators function can shed light on the regulation of immune responses and inflammation, offering insights into potential applications in the field of immunology.

SEE ALSO...

Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

ATP

56-65-5sc-507511
5 g
$17.00
(0)

ATP can activate PYPAF7 by binding to the ATP-binding domain of PYPAF7, promoting inflammasome assembly.

Adenosine-5′-Diphosphate, free acid

58-64-0sc-291846
sc-291846A
sc-291846B
sc-291846C
sc-291846D
sc-291846E
100 mg
500 mg
1 g
10 g
100 g
500 g
$79.00
$184.00
$348.00
$942.00
$4688.00
$9370.00
1
(0)

ADP activates PYPAF7 by binding to its ATP-binding domain, leading to inflammasome assembly and inflammation.

Cisplatin

15663-27-1sc-200896
sc-200896A
100 mg
500 mg
$138.00
$380.00
101
(4)

Cisplatin activates PYPAF7 by causing DNA damage and cellular stress, leading to inflammasome assembly.