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内吞循环蛋白EHD1在神经管发育过程中调节初级纤毛形态发生和SHH信号传导。

Endocytic recycling protein EHD1 regulates primary cilia morphogenesis and SHH signaling during neural tube development.

作者信息

Bhattacharyya Sohinee, Rainey Mark A, Arya Priyanka, Mohapatra Bhopal C, Mushtaq Insha, Dutta Samikshan, George Manju, Storck Matthew D, McComb Rodney D, Muirhead David, Todd Gordon L, Gould Karen, Datta Kaustubh, Gelineau-van Waes Janee, Band Vimla, Band Hamid

机构信息

The Department of Pathology &Microbiology, University of Nebraska Medical Center, Omaha, NE, USA.

Eppley Institute for Research in Cancer and Allied Diseases,University of Nebraska Medical Center, Omaha, NE, USA.

出版信息

Sci Rep. 2016 Feb 17;6:20727. doi: 10.1038/srep20727.

Abstract

Members of the four-member C-terminal EPS15-Homology Domain-containing (EHD) protein family play crucial roles in endocytic recycling of cell surface receptors from endosomes to the plasma membrane. In this study, we show that Ehd1 gene knockout in mice on a predominantly B6 background is embryonic lethal. Ehd1-null embryos die at mid-gestation with a failure to complete key developmental processes including neural tube closure, axial turning and patterning of the neural tube. We found that Ehd1-null embryos display short and stubby cilia on the developing neuroepithelium at embryonic day 9.5 (E9.5). Loss of EHD1 also deregulates the ciliary SHH signaling with Ehd1-null embryos displaying features indicative of increased SHH signaling, including a significant downregulation in the formation of the GLI3 repressor and increase in the ventral neuronal markers specified by SHH. Using Ehd1-null MEFS we found that EHD1 protein co-localizes with the SHH receptor Smoothened in the primary cilia upon ligand stimulation. Under the same conditions, EHD1 was shown to co-traffic with Smoothened into the developing primary cilia and we identify EHD1 as a direct binding partner of Smoothened. Overall, our studies identify the endocytic recycling regulator EHD1 as a novel regulator of the primary cilium-associated trafficking of Smoothened and Hedgehog signaling.

摘要

由四个成员组成的含C末端EPS15同源结构域(EHD)蛋白家族的成员,在细胞表面受体从内体到质膜的内吞循环中发挥着关键作用。在本研究中,我们发现,背景主要为B6的小鼠中Ehd1基因敲除是胚胎致死性的。Ehd1基因缺失的胚胎在妊娠中期死亡,无法完成关键的发育过程,包括神经管闭合、轴向旋转和神经管的模式形成。我们发现,Ehd1基因缺失的胚胎在胚胎第9.5天(E9.5)时,发育中的神经上皮上显示出短而粗的纤毛。EHD1的缺失还会使纤毛的SHH信号失调,Ehd1基因缺失的胚胎表现出SHH信号增加的特征,包括GLI3阻遏物形成的显著下调以及SHH指定的腹侧神经元标志物的增加。使用Ehd1基因缺失的小鼠胚胎成纤维细胞(MEF),我们发现配体刺激后,EHD1蛋白与初级纤毛中的SHH受体Smoothened共定位。在相同条件下,EHD1被证明与Smoothened共同转运到发育中的初级纤毛中,并且我们确定EHD1是Smoothened的直接结合伴侣。总体而言,我们的研究确定内吞循环调节因子EHD1是初级纤毛相关的Smoothened转运和Hedgehog信号传导的新型调节因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ad2/4756679/5df73a072162/srep20727-f1.jpg

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