Integrative BioSystems Institute and Wallace H. Coulter Department of Biomedical Engineering, Georgia Institute of Technology, Atlanta, Georgia, USA.
Adv Exp Med Biol. 2010;688:264-75. doi: 10.1007/978-1-4419-6741-1_19.
Sphingolipid metabolism constitutes a complex pathway system that includes biosynthesis of different types of sphingosines and ceramides, the formation and recycling of complex sphingolipids and the supply of materials for remodeling. Many of the metabolites have several roles, for instance, as substrates and as modulators of reactions in other parts of the system. The large number of sphingolipid compounds and the different types of nonlinear interactions among them render it difficult to predict responses of the sphingolipid pathway system to perturbations, unless one utilizes mathematical models. The sphingolipid pathway system not only invites modeling as a useful tool, it is also a very suitable test bed for developing detailed modeling techniques and analyses, due to several features. First, the reaction network is relatively well understood and many of the steps have been characterized, at least in vitro. Second, sphingolipid metabolism constitutes a relatively closed system, such that most reactions occur within the system rather than between the system and other pathways. Third, the basic structure of the pathway is conserved throughout evolution, but some of the details vary among differentspecies. This degree of similarity permits comparative analyses and may one day elucidate the gradual evolution toward superior system designs. We discuss here some reasons that make sphingolipid modeling an appealing companion to experimental researchand sketch out applications of sphingolipid models that are different from typical model uses.
鞘脂代谢构成了一个复杂的途径系统,包括不同类型的神经酰胺和鞘氨醇的生物合成、复杂鞘脂的形成和循环以及重塑的物质供应。许多代谢物具有多种作用,例如作为其他部分反应的底物和调节剂。鞘脂化合物的大量和它们之间的不同类型的非线性相互作用使得难以预测鞘脂途径系统对干扰的反应,除非使用数学模型。鞘脂途径系统不仅作为有用的工具邀请建模,而且由于几个特征,它也是开发详细建模技术和分析的非常合适的测试平台。首先,反应网络相对较好理解,许多步骤已经被描述,至少在体外。其次,鞘脂代谢构成一个相对封闭的系统,使得大多数反应发生在系统内而不是系统与其他途径之间。第三,途径的基本结构在整个进化过程中是保守的,但一些细节在不同物种之间有所不同。这种相似性程度允许进行比较分析,并可能有一天阐明向优越系统设计的逐步进化。我们在这里讨论了使鞘脂建模成为实验研究的吸引人的伴侣的一些原因,并概述了与典型模型用途不同的鞘脂模型的应用。