Departament de Genètica, Facultat de Biologia, Universitat de Barcelona, Barcelona, Spain.
Exp Eye Res. 2013 May;110:96-106. doi: 10.1016/j.exer.2013.03.003. Epub 2013 Mar 15.
Sphingolipids (SPLs) are finely tuned structural compounds and bioactive molecules involved in membrane fluidity and cellular homeostasis. The core sphingolipid, ceramide (CER), and its derivatives, regulate several crucial processes in neuronal cells, among them cell differentiation, cell-cell interactions, membrane conductance, synaptic transmission, and apoptosis. Mutations in Ceramide Kinase-Like (CERKL) cause autosomal recessive Retinitis Pigmentosa and Cone Rod Dystrophy. The presence of a conserved lipid kinase domain and the overall similarity with CERK suggested that CERKL might play a role in the SPL metabolism as a CER kinase. Unfortunately, CERKL function and substrate(s), as well as its contribution to the retinal etiopathology, remain as yet unknown. In this work we aimed to characterize the mouse retinal sphingolipidome by UPLC-TOF to first, thoroughly investigate the SPL composition of the murine retina, compare it to our Cerkl -/- model, and finally assess new possible CERKL substrates by phosphorus quantification and protein-lipid overlay. Our results showed a consistent and notable decrease of the retinal SPL content (mainly ranging from 30% to 60%) in the Cerkl -/- compared to WT retinas, which was particularly evident in the glucosyl/galactosyl ceramide species (Glc/GalCer) whereas the phospholipids and neutral lipids remained unaltered. Moreover, evidence in favor of CERKL binding to GlcCer, GalCer and sphingomyelin has been gathered. Altogether, these results highlight the involvement of CERKL in the SPL metabolism, question its role as a kinase, and open new scenarios concerning its function.
鞘脂(SPLs)是精细调节的结构化合物和生物活性分子,参与膜流动性和细胞内稳态。核心鞘脂,神经酰胺(CER)及其衍生物,调节神经元细胞中的几种关键过程,包括细胞分化、细胞间相互作用、膜电导、突触传递和细胞凋亡。Ceramide Kinase-Like(CERKL)的突变导致常染色体隐性遗传的视网膜色素变性和 Cone Rod Dystrophy。保守的脂质激酶结构域的存在和与 CERK 的整体相似性表明,CERKL 可能作为 CER 激酶在 SPL 代谢中发挥作用。不幸的是,CERKL 的功能和底物,以及它对视网膜发病机制的贡献,仍然未知。在这项工作中,我们旨在通过 UPLC-TOF 来表征小鼠视网膜鞘脂组,首先,彻底研究小鼠视网膜的 SPL 组成,将其与我们的 Cerkl -/- 模型进行比较,最后通过磷定量和蛋白质-脂质覆盖来评估新的可能的 CERKL 底物。我们的结果显示,在 Cerkl -/- 与 WT 视网膜相比,视网膜 SPL 含量(主要范围为 30%至 60%)持续且显著下降,这在葡萄糖基/半乳糖基神经酰胺(Glc/GalCer)中尤为明显,而磷脂和中性脂质保持不变。此外,还收集了支持 CERKL 与 GlcCer、GalCer 和神经鞘磷脂结合的证据。总之,这些结果强调了 CERKL 参与 SPL 代谢,质疑其作为激酶的作用,并开辟了关于其功能的新情景。