Lyck Ruth, Ruderisch Nadine, Moll Anton G, Steiner Oliver, Cohen Clemens D, Engelhardt Britta, Makrides Victoria, Verrey Francois
Theodor Kocher Institute, University of Bern, Bern, Switzerland.
J Cereb Blood Flow Metab. 2009 Sep;29(9):1491-502. doi: 10.1038/jcbfm.2009.72. Epub 2009 Jun 3.
Tight homeostatic control of brain amino acids (AA) depends on transport by solute carrier family proteins expressed by the blood-brain barrier (BBB) microvascular endothelial cells (BMEC). To characterize the mouse BMEC transcriptome and probe culture-induced changes, microarray analyses of platelet endothelial cell adhesion molecule-1-positive (PECAM1(+)) endothelial cells (ppMBMECs) were compared with primary MBMECs (pMBMEC) cultured in the presence or absence of glial cells and with b.End5 endothelioma cell line. Selected cell marker and AA transporter mRNA levels were further verified by reverse transcription real-time PCR. Regardless of glial coculture, expression of a large subset of genes was strongly altered by a brief culture step. This is consistent with the known dependence of BMECs on in vivo interactions to maintain physiologic functions, for example, tight barrier formation, and their consequent dedifferentiation in culture. Seven (4F2hc, Lat1, Taut, Snat3, Snat5, Xpct, and Cat1) of nine AA transporter mRNAs highly expressed in freshly isolated ppMBMECs were strongly downregulated for all cultures and two (Snat2 and Eaat3) were variably regulated. In contrast, five AA transporter mRNAs with low expression in ppMBMECs, including y(+)Lat2, xCT, and Snat1, were upregulated by culture. We hypothesized that the AA transporters highly expressed in ppMBMECs and downregulated in culture have a major in vivo function for BBB transendothelial transport.
脑氨基酸(AA)的严格稳态控制依赖于血脑屏障(BBB)微血管内皮细胞(BMEC)表达的溶质载体家族蛋白的转运。为了表征小鼠BMEC转录组并探究培养诱导的变化,将血小板内皮细胞粘附分子-1阳性(PECAM1(+))内皮细胞(ppMBMECs)的微阵列分析与在有或没有神经胶质细胞存在的情况下培养的原代MBMECs(pMBMEC)以及b.End5内皮瘤细胞系进行了比较。选定的细胞标志物和AA转运蛋白mRNA水平通过逆转录实时PCR进一步验证。无论是否与神经胶质细胞共培养,短暂的培养步骤都会强烈改变大量基因的表达。这与已知的BMECs依赖体内相互作用来维持生理功能(例如紧密屏障形成)以及它们在培养中随之而来的去分化是一致的。在新鲜分离的ppMBMECs中高度表达的9种AA转运蛋白mRNA中的7种(4F2hc、Lat1、Taut、Snat3、Snat5、Xpct和Cat1)在所有培养物中均被强烈下调,2种(Snat2和Eaat3)受到不同程度的调节。相比之下,在ppMBMECs中低表达的5种AA转运蛋白mRNA,包括y(+)Lat2、xCT和Snat1,在培养后上调。我们假设在ppMBMECs中高度表达且在培养中下调的AA转运蛋白对BBB跨内皮转运具有主要的体内功能。