The Psychiatric Institute, Department of Psychiatry, University of Illinois at Chicago, Chicago, IL 60612, USA.
Neuroscience. 2010 Dec 1;171(2):383-9. doi: 10.1016/j.neuroscience.2010.09.019. Epub 2010 Sep 17.
It has been suggested that the enzymatic pathway of 5-lipoxygenase (5-LOX) influences brain functioning and pathobiology. The mRNAs for both the enzyme 5-LOX and its activating protein FLAP have been found in the cerebellum. In this work, we investigated the cellular expression of 5-LOX in the adult mouse cerebellar cortex. We used the in situ mRNA hybridization assay, immunocytochemistry, laser capture microdissection, and our previously developed method for assaying the DNA methylation status of a putative mouse 5-LOX promoter. Since both 5-LOX mRNA in situ hybridization signal and FLAP immunoreactivity co-localize with calbindin 28 kD immunoreactivity (a Purkinje cell marker) but not with S-100β immunoreactivity (a Bergmann glia marker), the suggestion is that the 5-LOX pathway is expressed in cerebellar Purkinje cells. We found that methylation in the sites targeted by methylation-sensitive restriction endonucleases AciI and HinP1I but not BstUI and HpaII was greater in DNA samples obtained from a high-5-LOX-expressing cerebellar region (Purkinje cells) versus a low-5-LOX-expressing region (the molecular cell layer), suggesting a possible epigenetic contribution to the cell-specific 5-LOX expression in the cerebellum. We propose that Purkinje cell-localized 5-LOX and FLAP expression may be involved in the cerebellar synthesis of leukotrienes and/or could influence the Dicer-mediated microRNA formation and processes of neuroplasticity.
有人认为 5-脂氧合酶(5-LOX)的酶促途径会影响大脑功能和病理生物学。小脑中发现了酶 5-LOX 和其激活蛋白 FLAP 的 mRNA。在这项工作中,我们研究了成年小鼠小脑皮质中 5-LOX 的细胞表达。我们使用原位 mRNA 杂交测定、免疫细胞化学、激光捕获显微切割以及我们之前开发的方法来检测假定的小鼠 5-LOX 启动子的 DNA 甲基化状态。由于 5-LOX mRNA 原位杂交信号和 FLAP 免疫反应性与钙结合蛋白 28 kD 免疫反应性(浦肯野细胞标志物)共定位,但与 S-100β 免疫反应性(伯格曼胶质细胞标志物)不共定位,提示 5-LOX 途径在小脑浦肯野细胞中表达。我们发现,在用甲基敏感限制性内切酶 AciI 和 HinP1I 靶向的位点进行甲基化,但不在 BstUI 和 HpaII 靶向的位点进行甲基化的程度,在来自高 5-LOX 表达小脑区域(浦肯野细胞)的 DNA 样本中高于低 5-LOX 表达区域(分子细胞层),提示可能存在表观遗传贡献对小脑中特定细胞的 5-LOX 表达。我们提出,浦肯野细胞定位的 5-LOX 和 FLAP 表达可能参与小脑内白三烯的合成,或者可能影响 Dicer 介导的 microRNA 形成和神经可塑性过程。