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α-klotho调节出生后的神经发生,并预防与年龄相关的空间记忆丧失。

Klotho regulates postnatal neurogenesis and protects against age-related spatial memory loss.

作者信息

Laszczyk Ann M, Fox-Quick Stephanie, Vo Hai T, Nettles Dailey, Pugh Phyllis C, Overstreet-Wadiche Linda, King Gwendalyn D

机构信息

Department of Neurobiology, University of Alabama at Birmingham, Birmingham, AL, USA.

Department of Neurobiology, University of Alabama at Birmingham, Birmingham, AL, USA.

出版信息

Neurobiol Aging. 2017 Nov;59:41-54. doi: 10.1016/j.neurobiolaging.2017.07.008. Epub 2017 Jul 29.

Abstract

Although the absence of the age-regulating klotho protein causes klotho-deficient mice to rapidly develop cognitive impairment and increasing klotho enhances hippocampal-dependent memory, the cellular effects of klotho that mediate hippocampal-dependent memory function are unknown. Here, we show premature aging of the klotho-deficient hippocampal neurogenic niche as evidenced by reduced numbers of neural stem cells, decreased proliferation, and impaired maturation of immature neurons. Klotho-deficient neurospheres show reduced proliferation and size that is rescued by supplementation with shed klotho protein. Conversely, 6-month-old klotho-overexpressing mice exhibit increased numbers of neural stem cells, increased proliferation, and more immature neurons with enhanced dendritic arborization. Protection from normal age-related loss of object location memory with klotho overexpression and loss of spatial memory when klotho is reduced by even half suggests direct, local effects of the protein. Together, these data show that klotho is a novel regulator of postnatal neurogenesis affecting neural stem cell proliferation and maturation sufficient to impact hippocampal-dependent spatial memory function.

摘要

尽管缺乏调节衰老的klotho蛋白会导致klotho基因缺陷小鼠迅速出现认知障碍,而增加klotho蛋白水平可增强海马体依赖性记忆,但介导海马体依赖性记忆功能的klotho蛋白的细胞效应尚不清楚。在此,我们发现klotho基因缺陷的海马神经发生微环境出现早衰,表现为神经干细胞数量减少、增殖降低以及未成熟神经元成熟障碍。klotho基因缺陷的神经球增殖和大小降低,补充分泌型klotho蛋白可使其恢复。相反,6月龄klotho过表达小鼠的神经干细胞数量增加、增殖增强,且有更多未成熟神经元,其树突分支增多。klotho过表达可防止正常衰老相关的物体位置记忆丧失,而klotho蛋白水平哪怕仅降低一半也会导致空间记忆丧失,这表明该蛋白具有直接的局部效应。总之,这些数据表明klotho是出生后神经发生的新型调节因子,可影响神经干细胞增殖和成熟,足以影响海马体依赖性空间记忆功能。

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Neuroscience. 2017 Apr 7;347:123-133. doi: 10.1016/j.neuroscience.2017.02.006. Epub 2017 Feb 12.
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