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转铁蛋白转基因小鼠的髓鞘形成和运动协调性增强。

Myelination and motor coordination are increased in transferrin transgenic mice.

作者信息

Saleh Maria-Carla, Espinosa de los Monteros Araceli, de Arriba Zerpa Gonzalo A, Fontaine Isabelle, Piaud Oriane, Djordjijevic Dragan, Baroukh Nadine, Garcia Otin Angel Luis, Ortiz Esteban, Lewis Sandra, Fiette Laurence, Santambrogio Paolo, Belzung Catherine, Connor James R, de Vellis Jean, Pasquini Juana M, Zakin Mario M, Baron Bruno, Guillou Florian

机构信息

Unité d'Expression des Gènes Eucaryotes, Institut Pasteur, Paris, France.

出版信息

J Neurosci Res. 2003 Jun 1;72(5):587-94. doi: 10.1002/jnr.10619.

Abstract

Myelin deficiency in the central nervous system (CNS) can cause severe disabling conditions. Most of the transgenic mice models overexpressing myelin components have limitations for investigators of myelin deficiency and myelin therapy as they severely alter CNS architecture. It has been postulated that transferrin (Tf) is involved in oligodendrocyte (OL) maturation and myelinogenesis. Because Tf is not an intrinsic myelin constituent, we decided to investigate if its overexpression could have an impact on the myelination process without affecting myelin integrity. We generated transgenic mice containing the complete human Tf gene specifically overexpressed in OLs. This overexpression leads to more than a 30% increase in myelin components, such as galactolipids, phospholipids, and proteins. Electron microscopy showed that myelin is structurally normal in terms of thickness and compaction. Behavior analysis showed that mice do not display significant modifications in their locomotion and cognitive and emotional abilities. Furthermore, in one of the genetic background, animals presented a significant increase in motor coordination. We did not find any modification in OL number during early postnatal development, suggesting that Tf does not act on OL proliferation. In addition, the levels of iron and ferritin remained unchanged in the brain of transgenic mice compared to control mice. Our findings indicate that, besides its known iron transport function, Tf is able to influence myelination process and induce behavioral improvements in mice.

摘要

中枢神经系统(CNS)中的髓鞘缺乏可导致严重的致残状况。大多数过表达髓鞘成分的转基因小鼠模型对髓鞘缺乏和髓鞘治疗的研究人员来说存在局限性,因为它们会严重改变中枢神经系统的结构。据推测,转铁蛋白(Tf)参与少突胶质细胞(OL)的成熟和髓鞘形成。由于Tf不是髓鞘的固有成分,我们决定研究其过表达是否会对髓鞘形成过程产生影响而不影响髓鞘的完整性。我们构建了在OL中特异性过表达完整人类Tf基因的转基因小鼠。这种过表达导致髓鞘成分(如半乳糖脂、磷脂和蛋白质)增加超过30%。电子显微镜显示,髓鞘在厚度和致密性方面结构正常。行为分析表明,小鼠在运动、认知和情感能力方面没有表现出明显变化。此外,在其中一种遗传背景下,动物的运动协调性显著提高。我们在出生后早期发育过程中未发现OL数量有任何变化,这表明Tf对OL增殖没有作用。此外,与对照小鼠相比,转基因小鼠大脑中铁和铁蛋白的水平保持不变。我们的研究结果表明,除了其已知的铁转运功能外,Tf还能够影响髓鞘形成过程并改善小鼠的行为。

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