Sabaouni Imane, Moussa Ahmed, Vannier Brigitte, Semlali Oussama, Pietka Terri A, Abumrad Nada A, Ibrahimi Azeddine
Medical Biotechnology Lab (MedBiotech), Rabat Medical & Pharmacy School, Mohammed V Souissi University, Rabat, Morocco.
Bioinformation. 2013 Oct 16;9(17):849-52. doi: 10.6026/97320630009849. eCollection 2013.
We have previously shown that CD36 is a membrane protein that facilitates long chain fatty acid (FA) transport by muscle tissues. We also documented the significant impact of muscle CD36 expression on heart function, skeletal muscle insulin sensitivity as well as on overall metabolism. To identify a comprehensive set of genes that are differentially regulated by CD36 expression in the heart, we used two microarray technologies (Affymetrix and Agilent) to compare gene expression in heart tissues from CD36 KnocK-Out (KO-CD36) versus wild type (WT-CD36) mice. The obtained results using the two technologies were similar with around 35 genes differentially expressed using both technologies. Absence of CD36 led to down-regulation of the expression of three groups of genes involved in pathways of FA metabolism, angiogenesis/apoptosis and structure. These data are consistent with the fact that the CD36 protein binds FA and thrombospondin 1 invoved respectively in lipid metabolism and anti-angiogenic activities. In conclusion, our findings led to validate our data analysis workflow and identify specific pathways, possibly underlying the phenotypic abnormalities in CD36 Knock -Out hearts.
我们之前已经表明,CD36是一种膜蛋白,可促进肌肉组织对长链脂肪酸(FA)的转运。我们还记录了肌肉中CD36表达对心脏功能、骨骼肌胰岛素敏感性以及整体代谢的重大影响。为了确定一组在心脏中受CD36表达差异调节的综合基因,我们使用了两种微阵列技术(Affymetrix和Agilent)来比较CD36基因敲除(KO - CD36)小鼠与野生型(WT - CD36)小鼠心脏组织中的基因表达。使用这两种技术获得的结果相似,两种技术均有大约35个基因差异表达。CD36的缺失导致参与FA代谢、血管生成/凋亡和结构途径的三组基因的表达下调。这些数据与CD36蛋白分别结合参与脂质代谢和抗血管生成活性的FA和血小板反应蛋白1这一事实一致。总之,我们的研究结果验证了我们的数据分析流程,并确定了特定途径,这些途径可能是CD36基因敲除心脏表型异常的基础。