Date published: 2025-12-8

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ERR β Inhibitors

Santa Cruz Biotechnology now offers a broad range of ERR β Inhibitors for use in various applications. ERR β, or Estrogen-Related Receptor Beta, is a member of the nuclear hormone receptor superfamily, primarily involved in the transcriptional regulation of genes linked to metabolic and developmental processes. The research surrounding ERR β inhibitors has been pivotal in unraveling the roles of non-steroidal receptors in cellular energy homeostasis and mitochondrial function. These inhibitors are crucial tools in molecular biology and biochemistry for dissecting the pathways through which ERR β influences gene expression and cellular metabolism. Moreover, their role extends to studies on cellular differentiation and adaptation to metabolic stresses, where they help clarify the receptor's involvement in these complex biological processes. The study of ERR β inhibitors is also significant in the context of developmental biology, as they provide insights into the regulatory mechanisms that may affect tissue development and function. By modulating ERR β activity, researchers can explore its contributions to various signaling pathways that influence cellular behavior in diverse biological systems. This category of inhibitors represents a vital resource for scientists aiming to advance their understanding of nuclear receptor biology, particularly in relation to energy balance and metabolic regulation at the cellular level. View detailed information on our available ERR β Inhibitors by clicking on the product name.

SEE ALSO...

Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Diethyl 2-Acetamido-2-[2-(4-octylphenylethyl)malonate

162358-08-9sc-218198
25 mg
$330.00
(0)

Diethyl 2-Acetamido-2-[2-(4-octylphenylethyl)malonate is characterized by its ability to selectively engage with ERR beta, leveraging hydrophobic interactions and hydrogen bonding to stabilize its binding conformation. This compound exhibits a unique mechanism of action, promoting specific downstream signaling cascades while modulating gene expression. Its structural features facilitate distinct molecular recognition patterns, providing insights into ERR beta's role in metabolic regulation and cellular homeostasis.