Date published: 2026-4-24

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PKC β Substrates

Santa Cruz Biotechnology now offers a broad range of PKCβ Substrates for use in various applications. PKCβ Substrates are essential tools for studying the activity and specificity of protein kinase C beta (PKCβ), an enzyme that plays a pivotal role in regulating numerous cellular processes, including signal transduction, gene expression, cell proliferation, and differentiation. By providing specific substrates for PKCβ, researchers can accurately measure its kinase activity and investigate the phosphorylation events mediated by this enzyme. These substrates are crucial for understanding how PKCβ modulates various signaling pathways and cellular functions. In scientific research, PKCβ Substrates are used to explore the downstream effects of PKCβ activation on target proteins involved in processes such as calcium signaling, membrane dynamics, and cytoskeletal organization. Researchers employ these substrates to study the role of PKCβ in different cellular contexts and to study the complex signaling networks it regulates. Additionally, PKCβ Substrates are valuable in high-throughput screening assays aimed at identifying potential inhibitors or activators of PKCβ, aiding in the discovery of new regulatory mechanisms. The use of PKCβ Substrates supports the development of experimental models to dissect the intricate interactions between PKCβ and other signaling molecules, enhancing our understanding of cellular regulation and adaptation. By enabling precise measurement and manipulation of PKCβ activity, these substrates facilitate detailed studies of PKCβ's role in cellular physiology. View detailed information on our available PKCβ Substrates by clicking on the product name.
Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Myelin basic protein (4-14), N-acetylated

126768-94-3 (non-acetylated)sc-201155
1 mg
$262.00
(0)

Myelin basic protein (4-14), N-acetylated, serves as a pivotal regulator of PKC beta, exhibiting unique binding affinities that facilitate specific protein interactions. This compound influences downstream signaling pathways by modulating the phosphorylation state of target proteins, thereby affecting cellular responses. Its structural conformation allows for enhanced stability in complex environments, while its amphipathic characteristics promote interactions with lipid membranes, impacting cellular dynamics and localization.