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肌球蛋白 10 敲除(Myo10)小鼠表型分析,此类小鼠缺乏全长(运动型)但不缺乏脑特异性无头肌球蛋白 X。

Phenotypic analysis of Myo10 knockout (Myo10) mice lacking full-length (motorized) but not brain-specific headless myosin X.

机构信息

Institut für Molekulare Zellbiologie, Westfälische Wilhelms-Universität Münster, 48149, Münster, Germany.

Department of Medicine, Transgenic Animal and Genetic Engineering Models (TRAM), Westfälische Wilhelms-Universität Münster, 48149, Münster, Germany.

出版信息

Sci Rep. 2019 Jan 24;9(1):597. doi: 10.1038/s41598-018-37160-y.

Abstract

We investigated the physiological functions of Myo10 (myosin X) using Myo10 reporter knockout (Myo10) mice. Full-length (motorized) Myo10 protein was deleted, but the brain-specific headless (Hdl) isoform (Hdl-Myo10) was still expressed in homozygous mutants. In vitro, we confirmed that Hdl-Myo10 does not induce filopodia, but it strongly localized to the plasma membrane independent of the MyTH4-FERM domain. Filopodia-inducing Myo10 is implicated in axon guidance and mice lacking the Myo10 cargo protein DCC (deleted in colorectal cancer) have severe commissural defects, whereas MRI (magnetic resonance imaging) of isolated brains revealed intact commissures in Myo10 mice. However, reminiscent of Waardenburg syndrome, a neural crest disorder, Myo10 mice exhibited pigmentation defects (white belly spots) and simple syndactyly with high penetrance (>95%), and 24% of mutant embryos developed exencephalus, a neural tube closure defect. Furthermore, Myo10 mice consistently displayed bilateral persistence of the hyaloid vasculature, revealed by MRI and retinal whole-mount preparations. In principle, impaired tissue clearance could contribute to persistence of hyaloid vasculature and syndactyly. However, Myo10-deficient macrophages exhibited no defects in the phagocytosis of apoptotic or IgG-opsonized cells. RNA sequence analysis showed that Myo10 was the most strongly expressed unconventional myosin in retinal vascular endothelial cells and expression levels increased 4-fold between P6 and P15, when vertical sprouting angiogenesis gives rise to deeper layers. Nevertheless, imaging of isolated adult mutant retinas did not reveal vascularization defects. In summary, Myo10 is important for both prenatal (neural tube closure and digit formation) and postnatal development (hyaloid regression, but not retinal vascularization).

摘要

我们使用 Myo10 报告基因敲除(Myo10)小鼠研究了 Myo10(肌球蛋白 X)的生理功能。全长(运动)Myo10 蛋白被删除,但脑特异性无头(Hdl)同工型(Hdl-Myo10)仍在纯合突变体中表达。在体外,我们证实 Hdl-Myo10 不会诱导丝状伪足,但它强烈定位于质膜,而不依赖于 MyTH4-FERM 结构域。诱导丝状伪足的 Myo10 参与轴突导向,缺乏 Myo10 货物蛋白 DCC(结直肠癌缺失)的小鼠有严重的连合缺陷,而磁共振成像(MRI)显示孤立大脑中的连合完好无损在 Myo10 小鼠中。然而,与 Waardenburg 综合征(一种神经嵴疾病)类似,Myo10 小鼠表现出色素沉着缺陷(白色腹部斑点)和简单并指,具有高外显率(>95%),并且 24%的突变体胚胎发育为前脑无裂畸形,神经管闭合缺陷。此外,Myo10 小鼠始终表现出玻璃状体血管的双侧持续性,通过 MRI 和视网膜全层铺片揭示。原则上,组织清除受损可能导致玻璃状体血管和并指的持续存在。然而,Myo10 缺陷型巨噬细胞在吞噬凋亡或 IgG 调理细胞方面没有缺陷。RNA 序列分析显示,Myo10 是视网膜血管内皮细胞中表达最强的非传统肌球蛋白,在 P6 和 P15 之间表达水平增加 4 倍,此时垂直发芽血管生成导致更深的层次。然而,对分离的成年突变体视网膜的成像并未显示血管化缺陷。总之,Myo10 对产前(神经管闭合和手指形成)和产后(玻璃状体退化,但不是视网膜血管化)发育都很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e2a6/6345916/7e470ebe4673/41598_2018_37160_Fig1_HTML.jpg

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