Enerson Bradley E, Drewes Lester R
Department of Biochemistry and Molecular Biology and The Center for Cell and Molecular Biology, Medical School Duluth, University of Minnesota, Duluth, Minnesota 55812, USA.
J Cereb Blood Flow Metab. 2006 Jul;26(7):959-73. doi: 10.1038/sj.jcbfm.9600249. Epub 2005 Nov 23.
The blood-brain barrier (BBB) is the cellular interface between the circulating blood and neural environment, and is created by apposed endothelial cells and their intercellular tight junctions. Many aspects of how the BBB functions at the molecular level remain unresolved; therefore, we report for the first time a comprehensive gene expression profile of rat brain microvessels using serial analysis of gene expression (SAGE). We assembled a full and quantitative SAGE catalog containing 101,364 tags, of which 33% of the tags matched known genes, 51% matched expressed sequence tags (ESTs) in the Unigene database, and 16% of the tags were unassigned. The transcriptome catalog contains many new and novel transcripts among known BBB genes. A large compliment of junctional proteins and an extensive assortment of facilitated carrier and ATP-dependent transporters are included. To identify microvessel-enriched transcripts, we compared the microvessel SAGE catalog to cortex and hippocampus SAGE catalogs. This resulted in identification of 864 genes, including several known for their abundant expression at the BBB, such as the transferrin receptor (TrnR). Sorting enriched genes based on function revealed groups that encode transporters (11%), receptors (5%), proteins involved in vesicle trafficking (4%), structural proteins (10%), and components of signal transduction pathways (17%). This genomic repertoire emphasizes the unique cellular phenotype existing within the brain and further implicates the BBB as a mediator between the brain and periphery. These results may provide a useful resource and reference point from which to determine the effects of different physiological, developmental, and disease processes on BBB gene expression.
血脑屏障(BBB)是循环血液与神经环境之间的细胞界面,由相邻的内皮细胞及其细胞间紧密连接构成。血脑屏障在分子水平上的许多功能方面仍未得到解决;因此,我们首次使用基因表达序列分析(SAGE)报告了大鼠脑微血管的全面基因表达谱。我们组装了一个完整且定量的SAGE目录,包含101,364个标签,其中33%的标签与已知基因匹配,51%的标签与Unigene数据库中的表达序列标签(EST)匹配,16%的标签未被分配。转录组目录在已知的血脑屏障基因中包含许多新的和新颖的转录本。其中包括大量的连接蛋白以及各种各样的易化载体和ATP依赖性转运蛋白。为了鉴定微血管富集的转录本,我们将微血管SAGE目录与皮质和海马体SAGE目录进行了比较。这导致鉴定出864个基因,包括一些已知在血脑屏障中大量表达的基因,如转铁蛋白受体(TrnR)。根据功能对富集基因进行分类,发现了编码转运蛋白的基因群(11%)、受体(5%)、参与囊泡运输的蛋白质(4%)、结构蛋白(10%)以及信号转导通路的成分(17%)。这个基因组库强调了脑内存在的独特细胞表型,并进一步表明血脑屏障是脑与外周之间的介质。这些结果可能提供一个有用的资源和参考点,据此可确定不同生理、发育和疾病过程对血脑屏障基因表达产生的影响。