Russo Domenico, Parashuraman Seetharaman, D'Angelo Giovanni
Institute of Protein Biochemistry National Research Council, Via P. Castellino 111, Naples 80131, Italy.
Istituto di Ricovero e Cura a Carattere Scientifico SDN, Via Emanuele Gianturco 113, Naples 80143, Italy.
Int J Mol Sci. 2016 Oct 15;17(10):1732. doi: 10.3390/ijms17101732.
Glycosphingolipids (GSLs) are a class of ceramide-based glycolipids essential for embryo development in mammals. The synthesis of specific GSLs depends on the expression of distinctive sets of GSL synthesizing enzymes that is tightly regulated during development. Several reports have described how cell surface receptors can be kept in a resting state or activate alternative signalling events as a consequence of their interaction with GSLs. Specific GSLs, indeed, interface with specific protein domains that are found in signalling molecules and which act as GSL sensors to modify signalling responses. The regulation exerted by GSLs on signal transduction is orthogonal to the ligand-receptor axis, as it usually does not directly interfere with the ligand binding to receptors. Due to their properties of adjustable production and orthogonal action on receptors, GSLs add a new dimension to the control of the signalling in development. GSLs can, indeed, dynamically influence progenitor cell response to morphogenetic stimuli, resulting in alternative differentiation fates. Here, we review the available literature on GSL-protein interactions and their effects on cell signalling and development.
糖鞘脂(GSLs)是一类基于神经酰胺的糖脂,对哺乳动物胚胎发育至关重要。特定GSLs的合成取决于独特的GSL合成酶组的表达,这些酶在发育过程中受到严格调控。几份报告描述了细胞表面受体如何因其与GSLs的相互作用而保持静止状态或激活替代信号事件。事实上,特定的GSLs与信号分子中发现的特定蛋白质结构域相互作用,这些结构域作为GSL传感器来改变信号反应。GSLs对信号转导的调控与配体-受体轴正交,因为它通常不会直接干扰配体与受体的结合。由于其可调节产生的特性以及对受体的正交作用,GSLs为发育过程中信号传导的控制增添了新的维度。实际上,GSLs可以动态影响祖细胞对形态发生刺激的反应,导致不同的分化命运。在这里,我们综述了关于GSL-蛋白质相互作用及其对细胞信号传导和发育影响的现有文献。