Department of Pathology and Laboratory Medicine, College of Medicine, University of Saskatchewan, Saskatoon, Canada.
Cell Tissue Res. 2011 Aug;345(2):203-11. doi: 10.1007/s00441-011-1202-x. Epub 2011 Jun 24.
The lipidic modification of proteins has recently been shown to be of immense importance, although many of the roles of these modifications remain as yet unidentified. One of such key modifications occurring on several proteins is the covalent addition of a 14-carbon long saturated fatty acid, a process termed myristoylation. Myristoylation can occur during both co-translational protein synthesis and posttranslationally, confers lipophilicity to protein molecules, and controls protein functions. The protein myristoylation process is catalyzed by the enzyme N-myristoyltransferase (NMT), which exists as two isoforms: NMT1 and NMT2. NMT1 is essential for growth and development, during which rapid cellular proliferation is required, in a variety of organisms. NMT1 is also reported to be elevated in many cancerous states, which also involve rapid cellular growth, albeit in an unwanted and uncontrolled manner. The delineation of myristoylation-dependent cellular functions is still in a state of infancy, and many of the roles of the myristoylated proteins remain to be established. The development of cells of the leukocytic lineage represents a phase of rapid growth and development, and we have observed that NMT1 plays a role in this process. The current review outlines the roles of NMT1 in the growth and differentiation of the cells of leukocytic origin. The described studies clearly demonstrate the roles of NMT1 in the regulation of the developmental processes of the leukocytes cells and provide a basis for further research with the aim of unraveling the roles of protein myristoylation in both cellular and physiological context.
蛋白质的脂质修饰最近被证明具有重要意义,尽管这些修饰的许多功能仍然未知。在几种蛋白质上发生的一种关键修饰是共价添加 14 个碳长的饱和脂肪酸,这一过程称为豆蔻酰化。豆蔻酰化可以在共翻译蛋白质合成过程中和翻译后发生,赋予蛋白质分子亲脂性,并控制蛋白质功能。蛋白质豆蔻酰化过程由酶 N-豆蔻酰转移酶 (NMT) 催化,该酶有两种同工型:NMT1 和 NMT2。NMT1 在需要快速细胞增殖的各种生物体的生长和发育中是必不可少的。据报道,NMT1 在许多癌症状态下也会升高,尽管是以不受控制的方式,但也涉及快速的细胞生长。豆蔻酰化依赖的细胞功能的描述仍处于起步阶段,许多豆蔻酰化蛋白的功能仍有待确定。白细胞系细胞的发育代表了一个快速生长和发育的阶段,我们已经观察到 NMT1 在这个过程中发挥作用。本综述概述了 NMT1 在白细胞来源细胞的生长和分化中的作用。所述研究清楚地表明了 NMT1 在白细胞细胞发育过程中的调节作用,并为进一步研究提供了基础,目的是揭示蛋白质豆蔻酰化在细胞和生理环境中的作用。