Hannun Y A, Luberto C, Argraves K M
Department of Biochemistry and Molecular Biology, The Medical University of South Carolina, Charleston 29425, USA.
Biochemistry. 2001 Apr 24;40(16):4893-903. doi: 10.1021/bi002836k.
Many enzymes of sphingolipid metabolism are regulated in response to extra- and intracellular stimuli and in turn serve as regulators of levels of bioactive lipids (such as sphingosine, ceramide, sphingosine 1-phosphate, and diacylglycerol), and as such, they serve a prototypical modular function in cell regulation. However, lipid metabolism is also closely interconnected in that a product of one enzyme serves as a substrate for another. Moreover, many cell stimuli regulate more than one of these enzymes, thus adding to the complexity of regulation of lipid metabolism. In this paper, we review the status of enzymes of sphingolipid metabolism in cell regulation and propose a role for these enzymes in integration of cell responses, a role that builds on the modular organization while also taking advantage of the complexity and interconnectedness of lipid metabolism, thus providing for a combinatorial mechanism of generating diversity in cell responses. This may be a general prototype for the involvement of metabolic pathways in cell regulation.
许多鞘脂代谢酶会根据细胞外和细胞内刺激进行调节,进而充当生物活性脂质(如鞘氨醇、神经酰胺、1-磷酸鞘氨醇和二酰基甘油)水平的调节因子,因此,它们在细胞调节中发挥典型的模块化功能。然而,脂质代谢也紧密相连,因为一种酶的产物可作为另一种酶的底物。此外,许多细胞刺激会调节不止一种此类酶,从而增加了脂质代谢调节的复杂性。在本文中,我们综述了鞘脂代谢酶在细胞调节中的现状,并提出这些酶在整合细胞反应中的作用,这一作用基于模块化组织,同时也利用了脂质代谢的复杂性和相互关联性,从而提供了一种在细胞反应中产生多样性的组合机制。这可能是代谢途径参与细胞调节的一个通用原型。