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Unexpected cellular players in Rett syndrome pathology

机译:Rett综合征病理学中的意外细胞参与者

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摘要

Rett syndrome is a devastating neurodevelopmental disorder, primarily caused by mutations of methyl CpG-binding protein 2 (MeCP2). Although the genetic cause of disease was identified over a decade ago, a significant gap still remains in both our clinical and scientific understanding of its pathogenesis. Neurons are known to be primary players in pathology, with their dysfunction being the key in Rett syndrome. While studies in mice have demonstrated a clear causative – and potential therapeutic – role for neurons in Rett syndrome, recent work has suggested that other tissues also contribute significantly to progression of the disease. Indeed, Rett syndrome is known to present with several common peripheral pathologies, such as osteopenia, scoliosis, gastrointestinal problems including nutritional defects, and general growth deficit. Mouse models assessing the potential role of non-neuronal cell types have confirmed both roles in disease and potential therapeutic targets. A new picture is emerging in which neurons both initiate and drive pathology, while dysfunction of other cell types and peripheral tissues exacerbate disease, possibly amplifying further neurologic problems, and ultimately result in a positive feedback loop of progressively worsening symptoms. Here, we review what is known about neuronal and non-neuronal cell types, and discuss how this new, integrative understanding of the disease may allow for additional clinical and scientific pathways for treating and understanding Rett syndrome.
机译:Rett综合征是一种破坏性神经发育障碍,主要由甲基CpG结合蛋白2(MeCP2)的突变引起。尽管疾病的遗传原因已在十年前确定,但在我们对疾病发病机理的临床和科学理解上仍然存在巨大差距。已知神经元是病理学的主要参与者,其功能障碍是Rett综合征的关键。尽管在小鼠中的研究表明神经元在Rett综合征中具有明显的致病作用和潜在的治疗作用,但最近的研究表明,其他组织也对该病的进展做出了重要贡献。确实,已知瑞特综合征存在几种常见的周围病变,例如骨质减少,脊柱侧弯,包括营养缺陷在内的胃肠道疾病和总体生长不足。评估非神经细胞类型潜在作用的小鼠模型已证实在疾病中的作用和潜在的治疗靶点。正在出现新的图景,其中神经元既启动又驱动病理,而其他细胞类型和周围组织的功能障碍则加剧疾病,可能进一步加剧神经系统问题,并最终导致症状逐步恶化的正反馈回路。在这里,我们回顾了有关神经元和非神经元细胞类型的知识,并讨论了对疾病的这种新的综合理解如何为治疗和理解Rett综合征提供了更多的临床和科学途径。

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