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Mpdz缺失会损害室管膜细胞的完整性,导致小鼠围产期脑积水。

Loss of Mpdz impairs ependymal cell integrity leading to perinatal-onset hydrocephalus in mice.

作者信息

Feldner Anja, Adam M Gordian, Tetzlaff Fabian, Moll Iris, Komljenovic Dorde, Sahm Felix, Bäuerle Tobias, Ishikawa Hiroshi, Schroten Horst, Korff Thomas, Hofmann Ilse, Wolburg Hartwig, von Deimling Andreas, Fischer Andreas

机构信息

Vascular Signaling and Cancer, German Cancer Research Center (DKFZ), Heidelberg, Germany.

Division of Medical Physics in Radiology, German Cancer Research Center (DKFZ), Heidelberg, Germany.

出版信息

EMBO Mol Med. 2017 Jul;9(7):890-905. doi: 10.15252/emmm.201606430.

Abstract

Hydrocephalus is a common congenital anomaly. and () are the only known human gene loci associated with non-syndromic hydrocephalus. To investigate functions of the tight junction-associated protein Mpdz, we generated mouse models. Global gene deletion or conditional inactivation in Nestin-positive cells led to formation of supratentorial hydrocephalus in the early postnatal period. Blood vessels, epithelial cells of the choroid plexus, and cilia on ependymal cells, which line the ventricular system, remained morphologically intact in -deficient brains. However, flow of cerebrospinal fluid through the cerebral aqueduct was blocked from postnatal day 3 onward. Silencing of expression in cultured epithelial cells impaired barrier integrity, and loss of in astrocytes increased RhoA activity. In -deficient mice, ependymal cells had morphologically normal tight junctions, but expression of the interacting planar cell polarity protein Pals1 was diminished and barrier integrity got progressively lost. Ependymal denudation was accompanied by reactive astrogliosis leading to aqueductal stenosis. This work provides a relevant hydrocephalus mouse model and demonstrates that is essential to maintain integrity of the ependyma.

摘要

脑积水是一种常见的先天性异常。()是已知的与非综合征性脑积水相关的仅有人类基因位点。为了研究紧密连接相关蛋白Mpdz的功能,我们构建了小鼠模型。在出生后早期,Nestin阳性细胞中的全基因缺失或条件性失活导致幕上脑积水的形成。在缺乏()的大脑中,血管、脉络丛上皮细胞以及脑室系统内衬的室管膜细胞上的纤毛在形态上保持完整。然而,从出生后第3天起,脑脊液通过中脑导水管的流动就被阻断。培养的上皮细胞中()表达的沉默损害了屏障完整性,星形胶质细胞中()的缺失增加了RhoA活性。在缺乏()的小鼠中,室管膜细胞的紧密连接在形态上正常,但相互作用的平面细胞极性蛋白Pals1的表达减少,屏障完整性逐渐丧失。室管膜剥脱伴随着反应性星形胶质细胞增生,导致导水管狭窄。这项工作提供了一个相关的脑积水小鼠模型,并证明()对于维持室管膜的完整性至关重要。

需注意,原文括号处内容缺失,翻译可能存在一定局限性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a41/5494508/0dbf9d5cbf04/EMMM-9-890-g002.jpg

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