Date published: 2025-10-28

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EG432995 Activators

Smim22, a small integral membrane protein, plays a pivotal role in cellular processes crucial for early development, particularly in lipid droplet formation, positive regulation of cell migration, and the organization of the actin cytoskeleton. Expressed prominently in the embryo, embryo endoderm, and node, Smim22 orchestrates dynamic events that contribute to the intricacies of early developmental stages. Activation of Smim22 involves a spectrum of chemicals that directly or indirectly modulate its predicted functions. Cerulenin, a direct activator, enhances lipid droplet formation by promoting Smim22 expression. Jasplakinolide triggers actin cytoskeleton reorganization, positively impacting cell migration by activating Smim22. Troglitazone, an indirect activator, influences Smim22 through the PPAR-gamma pathway, contributing to lipid droplet formation and cell migration regulation. Blebbistatin directly activates Smim22, enhancing its role in actin cytoskeleton organization and cell migration.

A769662, an indirect activator through AMPK activation, positively regulates Smim22, influencing lipid droplet formation and cell migration. Latrunculin A, a direct activator, amplifies Smim22-mediated actin cytoskeleton regulation, impacting cell migration dynamics. GW501516, an indirect activator through PPAR-delta activation, enhances lipid droplet formation and positive regulation of cell migration. CK-666 directly activates Smim22 by influencing actin cytoskeleton organization. GW4869, an indirect activator through sphingolipid metabolism modulation, positively influences Smim22, contributing to lipid droplet formation and cell migration regulation. Cytochalasin D serves as a direct activator, amplifying Smim22-mediated actin cytoskeleton regulation and positively impacting cell migration. Metformin, an indirect activator through AMPK activation, positively regulates Smim22, influencing lipid droplet formation and cell migration. Berberine, another indirect activator through AMPK activation, positively influences Smim22, contributing to lipid droplet formation and the positive regulation of cell migration. In conclusion, Smim22 activation is a finely tuned process influenced by a diverse array of chemicals that directly or indirectly modulate its multifaceted functions in lipid droplet formation, cell migration, and actin cytoskeleton organization during early development. This detailed exploration sheds light on the intricate regulatory network governing Smim22's crucial roles, providing valuable insights into the dynamic cellular processes vital for embryonic development.

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