SKIV2L2 Activators are distinct chemical entities designed to intensify the functional performance of SKIV2L2, a protein critical to RNA surveillance and degradation. These activators function through several direct and indirect pathways. Direct enhancement of SKIV2L2's functionality occurs through the provision of ATP, an essential energy molecule for the RNA helicase activity of SKIV2L2. Uridine, a component of RNA, can also indirectly enhance SKIV2L2's functionality by increasing the pool of RNA that SKIV2L2 processes.
Indirect activators like Caffeine, AICAR, Resveratrol, Metformin, Salicylic Acid, Lithium Chloride, Rapamycin, N-acetylcysteine, Deferoxamine, and Oxaloacetate operate through altering various cellular processes such as metabolism and stress responses. These alterations place demand on RNA surveillance and degradation mechanisms, subsequently enhancing the functionality of SKIV2L2. These compounds underscore the intricate interplay between SKIV2L2 and the cellular environment, demonstrating how changes in metabolic and stress responses can effectively lead to enhanced SKIV2L2 activity.
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Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
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Deferoxamine mesylate | 138-14-7 | sc-203331 sc-203331A sc-203331B sc-203331C sc-203331D | 1 g 5 g 10 g 50 g 100 g | $255.00 $1039.00 $2866.00 $4306.00 $8170.00 | 19 | |
Deferoxamine is an iron chelator and can induce cellular stress responses, potentially increasing the demand for RNA surveillance and degradation, thereby enhancing SKIV2L2 functionality. | ||||||
Oxaloacetic Acid | 328-42-7 | sc-279934 sc-279934A sc-279934B | 25 g 100 g 1 kg | $300.00 $944.00 $7824.00 | 1 | |
Oxaloacetate is a key component of cellular metabolism. Changes in metabolism can indirectly increase the demand for RNA surveillance and degradation, enhancing SKIV2L2 activity. |