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Mfsd2a 是一种必需的ω-3 脂肪酸二十二碳六烯酸的转运蛋白。

Mfsd2a is a transporter for the essential omega-3 fatty acid docosahexaenoic acid.

机构信息

Signature Research Program in Cardiovascular and Metabolic Disorders, Duke-NUS Graduate Medical School Singapore, 8 College Road, 169857 Singapore.

Signature Research Program in Neuroscience and Behavioral Disorders, Duke-NUS Graduate Medical School Singapore, 8 College Road, 169857 Singapore.

出版信息

Nature. 2014 May 22;509(7501):503-6. doi: 10.1038/nature13241. Epub 2014 May 14.

Abstract

Docosahexaenoic acid (DHA) is an omega-3 fatty acid that is essential for normal brain growth and cognitive function. Consistent with its importance in the brain, DHA is highly enriched in brain phospholipids. Despite being an abundant fatty acid in brain phospholipids, DHA cannot be de novo synthesized in brain and must be imported across the blood-brain barrier, but mechanisms for DHA uptake in brain have remained enigmatic. Here we identify a member of the major facilitator superfamily--Mfsd2a (previously an orphan transporter)--as the major transporter for DHA uptake into brain. Mfsd2a is found to be expressed exclusively in endothelium of the blood-brain barrier of micro-vessels. Lipidomic analysis indicates that Mfsd2a-deficient (Mfsd2a-knockout) mice show markedly reduced levels of DHA in brain accompanied by neuronal cell loss in hippocampus and cerebellum, as well as cognitive deficits and severe anxiety, and microcephaly. Unexpectedly, cell-based studies indicate that Mfsd2a transports DHA in the form of lysophosphatidylcholine (LPC), but not unesterified fatty acid, in a sodium-dependent manner. Notably, Mfsd2a transports common plasma LPCs carrying long-chain fatty acids such LPC oleate and LPC palmitate, but not LPCs with less than a 14-carbon acyl chain. Moreover, we determine that the phosphor-zwitterionic headgroup of LPC is critical for transport. Importantly, Mfsd2a-knockout mice have markedly reduced uptake of labelled LPC DHA, and other LPCs, from plasma into brain, demonstrating that Mfsd2a is required for brain uptake of DHA. Our findings reveal an unexpected essential physiological role of plasma-derived LPCs in brain growth and function.

摘要

二十二碳六烯酸(DHA)是一种ω-3 脂肪酸,对正常大脑生长和认知功能至关重要。与它在大脑中的重要性一致,DHA 在脑磷脂中高度富集。尽管 DHA 是脑磷脂中丰富的脂肪酸,但它不能在大脑中从头合成,必须通过血脑屏障进口,但大脑中 DHA 的摄取机制仍然是个谜。在这里,我们鉴定出主要易化剂超家族的一个成员——Mfsd2a(以前是一个孤儿转运体)——为 DHA 进入大脑的主要转运体。发现 Mfsd2a 仅在微血管的血脑屏障内皮细胞中表达。脂质组学分析表明,Mfsd2a 缺陷(Mfsd2a 敲除)小鼠大脑中的 DHA 水平明显降低,伴随着海马体和小脑神经元细胞丢失,以及认知缺陷和严重焦虑,还有小头症。出乎意料的是,基于细胞的研究表明,Mfsd2a 以钠离子依赖的方式以溶血磷脂酰胆碱(LPC)的形式而不是未酯化脂肪酸的形式转运 DHA。值得注意的是,Mfsd2a 转运常见的带有长链脂肪酸的血浆 LPC,如油酸 LPC 和棕榈酸 LPC,但不转运少于 14 个碳酰链的 LPC。此外,我们确定 LPC 的磷两性离子头基对于转运至关重要。重要的是,Mfsd2a 敲除小鼠从血浆进入大脑的标记 LPC DHA 和其他 LPC 的摄取明显减少,表明 Mfsd2a 是大脑摄取 DHA 所必需的。我们的发现揭示了血浆衍生的 LPC 在大脑生长和功能中的一个意想不到的重要生理作用。

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