Date published: 2025-10-11

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Septin 1 Inhibitors

Septin 1 inhibitors are a class of chemical compounds that specifically target and inhibit the activity of Septin 1, a member of the septin family of GTP-binding proteins. Septins are cytoskeletal proteins involved in various cellular processes, including cytokinesis, membrane compartmentalization, and vesicle trafficking. Septin 1, in particular, plays a critical role in forming higher-order structures such as filaments and rings, which contribute to the structural organization of the cell. Inhibition of Septin 1 disrupts the assembly of these structures, affecting key cellular functions such as cell division, maintenance of cellular shape, and intracellular transport. By targeting Septin 1, researchers can investigate its specific role in cytoskeletal dynamics and its contributions to the organization of cellular architecture.

The molecular design of Septin 1 inhibitors typically involves compounds that interfere with the protein's GTPase activity or its ability to oligomerize and form filaments. These inhibitors may bind to the GTP-binding domain, preventing the hydrolysis of GTP, which is essential for septin polymerization and the formation of functional septin structures. Alternatively, inhibitors can disrupt protein-protein interactions within septin complexes, leading to the destabilization of septin filaments. By inhibiting Septin 1, researchers gain insights into the complex network of cytoskeletal proteins and how their interactions regulate cellular processes such as cell division, polarity, and vesicle movement. Septin 1 inhibitors serve as valuable tools for exploring the broader role of septins in maintaining cellular integrity and the intricate dynamics of the cytoskeleton, helping to uncover how these proteins coordinate essential processes that govern cell structure and function.

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Disulfiram

97-77-8sc-205654
sc-205654A
50 g
100 g
$52.00
$87.00
7
(1)

Disulfiram may reduce Septin 1 expression by inhibiting aldehyde dehydrogenase, which could lead to the accumulation of acetaldehyde and alteration of gene transcription.