Haploinsufficiency of the SLC2A1 gene and paucity of its translated product, the glucose transporter-1 (Glut1) protein, disrupt brain function and cause the neurodevelopmental disorder, Glut1 deficiency syndrome (Glut1 DS). There is little to suggest how reduced Glut1 causes cognitive dysfunction and no optimal treatment for Glut1 DS. We used model mice to demonstrate that low Glut1 protein arrests cerebral angiogenesis, resulting in a profound diminution of the brain microvasculature without compromising the blood-brain barrier. Studies to define the temporal requirements for Glut1 reveal that pre-symptomatic, AAV9-mediated repletion of the protein averts brain microvasculature defects and prevents disease, whereas augmenting the protein late, during adulthood, is devoid of benefit. Still, treatment following symptom onset can be effective; Glut1 repletion in early-symptomatic mutants that have experienced sustained periods of low brain glucose nevertheless restores the cerebral microvasculature and ameliorates disease. Timely Glut1 repletion may thus constitute an effective treatment for Glut1 DS.
Brain microvasculature defects and Glut1 deficiency syndrome averted by early repletion of the glucose transporter-1 protein.
早期补充葡萄糖转运蛋白-1 可预防脑微血管缺陷和 Glut1 缺乏症
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作者:Tang Maoxue, Gao Guangping, Rueda Carlos B, Yu Hang, Thibodeaux David N, Awano Tomoyuki, Engelstad Kristin M, Sanchez-Quintero Maria-Jose, Yang Hong, Li Fanghua, Li Huapeng, Su Qin, Shetler Kara E, Jones Lynne, Seo Ryan, McConathy Jonathan, Hillman Elizabeth M, Noebels Jeffrey L, De Vivo Darryl C, Monani Umrao R
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2017 | 起止号: | 2017 Jan 20; 8:14152 |
| doi: | 10.1038/ncomms14152 | 研究方向: | 其它 |
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