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Differential cellular expression of organic anion transporting peptides OATP1A2 and OATP2B1 in the human retina and brain: implications for carrier-mediated transport of neuropeptides and neurosteriods in the CNS

机译:在人类视网膜和大脑中有机阴离子转运肽OATP1A2和OATP2B1的细胞差异表达:对CNS中神经肽和神经固醇的载体介导转运的影响

摘要

Organic anion transporting polypeptides (OATPs) are polyspecific organic anion transporters, which are expressed in the blood-brain barrier, the choroid plexus, and other organs. The physiologic function of OATPs in extrahepatic tissues remains ambiguous. In rat retina, members of the OATP family are expressed. We therefore investigated the human retina for the expression of OATP1A2 and OATP2B1 and extended the study to human brain. Furthermore, we searched for peptide neurotransmitters as novel OATP substrates. OATP1A2 displayed a broad expression pattern in human retina as assessed by immunofluorescence localization. It is expressed in photoreceptor bodies and somas of amacrine cells. OATP1B2 expression is restricted to the inner nuclear layer and to the inner plexiform layer. Using paraffin sections from human cortex, cerebellum, and hippocampus, OATP1A2 was localized to neurons and neuronal processes, while OATP2B1 is expressed in endothelial cells of brain capillaries. Substance P and vasoactive intestinal peptide were identified as substrates for OATP1A2 and OATP2B1. Double-labeling immunofluorescence of human retina demonstrated the presence of substance P and of vasoactive intestinal peptides in neurons expressing OATP1A2 and OATP2B1, respectively. The expression of OATP1A2 and OATP2B1 in retinal neurons implies a role of these transporters in the reuptake of peptide neurotransmitters released from retinal neurons. The abundant expression of OATP1A2 in brain neurons points to the possibility that OATP1A2 could be involved in the homeostasis of neurosteroids. The high expression of OATP2B1 in brain capillaries supports an important function of OATPs in substance penetration across the blood-brain barrier.
机译:有机阴离子转运多肽(OATP)是多特异性有机阴离子转运蛋白,在血脑屏障,脉络丛和其他器官中表达。肝外组织中OATP的生理功能仍然不明确。在大鼠视网膜中,表达了OATP家族的成员。因此,我们调查了人类视网膜中OATP1A2和OATP2B1的表达并将该研究扩展到人脑。此外,我们搜索肽神经递质作为新型OATP底物。通过免疫荧光定位评估,OATP1A2在人视网膜中显示出广泛的表达模式。它在无长突细胞的感光体和体中表达。 OATP1B2表达限于内部核层和内部丛状层。使用来自人类皮层,小脑和海马的石蜡切片,OATP1A2定位于神经元和神经元过程,而OATP2B1在脑毛细血管的内皮细胞中表达。 P物质和血管活性肠肽被鉴定为OATP1A2和OATP2B1的底物。人视网膜的双标记免疫荧光证明分别在表达OATP1A2和OATP2B1的神经元中存在P物质和血管活性肠肽。 OATP1A2和OATP2B1在视网膜神经元中的表达暗示了这些转运蛋白在从视网膜神经元释放的肽神经递质的再摄取中的作用。 OATP1A2在脑神经元中的大量表达表明OATP1A2可能参与神经甾体的稳态。 OATP2B1在脑毛细血管中的高表达支持OATP在物质穿过血脑屏障的渗透中的重要功能。

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