Miao Weili, Porter Douglas F, Li Ya, Meservey Lindsey M, Yang Yen-Yu, Ma Chengjie, Ferguson Ian D, Tien Vivian B, Jack Timothy M, Ducoli Luca, Lopez-Pajares Vanessa, Tao Shiying, Savage Paul B, Wang Yinsheng, Khavari Paul A
Program in Epithelial Biology, Stanford University School of Medicine, 269 Campus Dr, Stanford, CA 94305, USA.
Department of Chemistry, University of California, 501 Big Springs Road, Riverside, CA 92521, USA.
Nucleic Acids Res. 2024 Dec 11;52(22):13577-13593. doi: 10.1093/nar/gkae1097.
Elevations in intracellular glucose concentrations are essential for epithelial cell differentiation by mechanisms that are not fully understood. Glucose has recently been found to directly bind several proteins to alter their functions to enhance differentiation. Among the newly identified glucose-binding proteins is NSUN2, an RNA-binding protein that we identified as indispensable for epidermal differentiation. Glucose was found to bind conserved sequences within NSUN2, enhancing its binding to S-adenosyl-L-methionine and boosting its enzymatic activity. Additionally, glucose enhanced NSUN2's proximity to proteins involved in mRNA translation, with NSUN2 modulating global messenger RNA (mRNA) translation, particularly that of key pro-differentiation mRNAs containing m5C modifications, such as GRHL3. Glucose thus engages diverse molecular mechanisms beyond its energetic roles to facilitate cellular differentiation processes.
细胞内葡萄糖浓度的升高对于上皮细胞分化至关重要,但其机制尚未完全明确。最近发现,葡萄糖可直接结合多种蛋白质以改变其功能,从而促进分化。新鉴定出的葡萄糖结合蛋白之一是NSUN2,这是一种RNA结合蛋白,我们发现它对表皮分化必不可少。研究发现,葡萄糖可结合NSUN2内的保守序列,增强其与S-腺苷-L-甲硫氨酸的结合,并提高其酶活性。此外,葡萄糖增强了NSUN2与参与mRNA翻译的蛋白质的接近性,NSUN2可调节全局信使RNA(mRNA)翻译,尤其是含有m5C修饰的关键促分化mRNA的翻译,例如GRHL3。因此,葡萄糖发挥了多种分子机制,超越了其能量作用,以促进细胞分化过程。