Date published: 2025-9-23

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LAS1L Activators

LAS1L, or LAS1-like, ribosome biogenesis factor, is a protein encoded by the LAS1L gene in humans. It plays an integral role in the process of ribosome biogenesis, an essential cellular process that fuels protein synthesis. Ribosomes, the protein factories of the cell, are complex molecular machines that require the coordinated assembly of numerous protein and RNA components. LAS1L participates in these assembly processes, ensuring the proper formation and function of ribosomes. Research has linked defects in this gene to conditions such as X-linked intellectual disability and pontocerebellar hypoplasia, which impact brain development. Despite its known functions, the mechanisms that control the expression of LAS1L are not fully understood.

Several chemical compounds, spanning a wide array of classes and functions, may induce the expression of LAS1L. For example, retinoic acid, a metabolite of vitamin A, could stimulate LAS1L expression by acting as a ligand for nuclear receptors. Similarly, dexamethasone, a synthetic glucocorticoid, may induce LAS1L expression by binding to the glucocorticoid receptor and altering its transcriptional activity. Phytoestrogens like genistein could upregulate LAS1L expression by binding to estrogen receptors, which then interact with estrogen response elements in the DNA to enhance transcription. Compounds such as sodium butyrate and trichostatin A, could stimulate LAS1L expression by increasing histone acetylation, a key process in transcriptional activation. Other compounds like 5-Aza-2'-deoxycytidine, estradiol, resveratrol, tamoxifen, diethylstilbestrol, fulvestrant, and epigallocatechin gallate might also play roles in increasing LAS1L expression. These interactions underscore the multifaceted nature of gene regulation and highlight the need for further research into the factors that control LAS1L expression.

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