Anderson Deborah H
Cancer Research Unit, Health Research Division, Saskatchewan Cancer Agency, 20 Campus Drive, Saskatoon, Sask., Canada S7N 4H4.
Prog Lipid Res. 2006 Mar;45(2):102-19. doi: 10.1016/j.plipres.2005.12.003. Epub 2006 Jan 18.
The mitogen-activated protein kinase (MAPK) signaling pathway is activated in response to a variety of extracellular stimuli such as growth factor stimulation. The best-characterized MAPK pathway involves the sequential activation of Raf, MEK and ERK proteins, capable of regulating the gene expression required for cell proliferation. Binding to specific lipids can regulate both the subcellular localization of these MAPK signaling proteins as well as their kinase activities. More recently it has become increasingly clear that the majority of MAPK signaling takes place intracellularly on endosomes and that the perturbation of endocytic pathways has dramatic effects on the MAPK pathway. This review highlights the direct effects of lipids on the localization and regulation of MAPK pathway proteins. In addition, the indirect effects lipids have on MAPK signaling via their regulation of endocytosis and the biophysical properties of different membrane lipids as a result of growth factor stimulation are discussed. The ability of a protein to bind to both lipids and proteins at the same time may act like a "ZIP code" to target that protein to a highly specific microlocation and could also allow a protein to be "handed off" to maintain tight control over its binding partners and location.
丝裂原活化蛋白激酶(MAPK)信号通路在响应多种细胞外刺激(如生长因子刺激)时被激活。研究最为透彻的MAPK通路涉及Raf、MEK和ERK蛋白的顺序激活,这些蛋白能够调节细胞增殖所需的基因表达。与特定脂质结合可调节这些MAPK信号蛋白的亚细胞定位及其激酶活性。最近越来越清楚的是,大多数MAPK信号传导发生在内体的细胞内,并且内吞途径的扰动对MAPK通路有显著影响。本综述重点介绍了脂质对MAPK通路蛋白定位和调节的直接作用。此外,还讨论了脂质通过调节内吞作用以及生长因子刺激导致的不同膜脂生物物理特性对MAPK信号传导产生的间接影响。一种蛋白质同时结合脂质和蛋白质的能力可能就像一个“邮政编码”,将该蛋白质靶向到高度特定的微位置,并且还可以使蛋白质“传递”,以维持对其结合伙伴和位置的严格控制。