Saponaro Concetta, Gammaldi Nicola, Cavallo Viviana, Ramírez-Morales Maria Antonieta, Zito Francesco Alfredo, Sonnessa Margherita, Vari Francesco, Serra Ilaria, De Summa Simona, Giudetti Anna Maria, Trerotola Marco, Vergara Daniele
Pathology Department, IRCCS Istituto Tumori "Giovanni Paolo II", 70124 Bari, Italy.
Department of Biological and Environmental Sciences and Technologies (DiSTeBA), University of Salento, 73100 Lecce, Italy.
Int J Mol Sci. 2025 Apr 10;26(8):3582. doi: 10.3390/ijms26083582.
The N-Myc Downstream Regulated Gene 1 (NDRG1) protein, a member of a family of four, has emerged as a key regulator of various physiological and pathological processes. Extensive knowledge has been gained on the modulation of NDRG1 expression during endoplasmic reticulum stress, autophagy, and hypoxia. Moreover, new functions have emerged in recent years. Notably, NDRG1 regulates cell differentiation, metabolism, autophagy and vesicular transport. This has raised interest in the molecular mechanisms that control the cellular levels and activity of NDRG1. A series of studies have shown that NDRG1 can be finely regulated at the transcriptional, post-transcriptional, and translational levels. In addition, processes that mediate protein degradation and clearance also play key roles. Furthermore, three different NDRG1 proteoforms with distinct functions have been identified. An important question is the extent to which these proteoforms contribute to the regulation of cellular functions. Given the growing clinical interest in NDRG1, this review provides an overview of the regulatory mechanisms that control NDRG1 abundance, helping to deepen our understanding of the complex mechanisms underlying protein regulation.
N - myc下游调控基因1(NDRG1)蛋白是四成员家族的一员,已成为多种生理和病理过程的关键调节因子。关于内质网应激、自噬和缺氧过程中NDRG1表达的调控,我们已经有了广泛的认识。此外,近年来还发现了其新功能。值得注意的是,NDRG1调节细胞分化、代谢、自噬和囊泡运输。这引发了人们对控制NDRG1细胞水平和活性的分子机制的兴趣。一系列研究表明,NDRG1可以在转录、转录后和翻译水平上受到精细调控。此外,介导蛋白质降解和清除的过程也起着关键作用。此外,还鉴定出了三种具有不同功能的NDRG1蛋白变体。一个重要的问题是这些蛋白变体在多大程度上有助于细胞功能的调节。鉴于临床对NDRG1的兴趣日益浓厚,本综述概述了控制NDRG1丰度的调控机制,有助于加深我们对蛋白质调控复杂机制的理解。