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Ndm,一种卷曲螺旋结构域蛋白,可抑制巨胞饮作用,并对细胞迁移产生影响。

Ndm, a coiled-coil domain protein that suppresses macropinocytosis and has effects on cell migration.

机构信息

Department of Biological Sciences, University of Maryland, Baltimore County, Baltimore, MD 21250, USA.

出版信息

Mol Biol Cell. 2012 Sep;23(17):3407-19. doi: 10.1091/mbc.E12-05-0392. Epub 2012 Jul 18.

Abstract

The ampA gene has a role in cell migration in Dictyostelium discoideum. Cells overexpressing AmpA show an increase in cell migration, forming large plaques on bacterial lawns. A second-site suppressor of this ampA-overexpressing phenotype identified a previously uncharacterized gene, ndm, which is described here. The Ndm protein is predicted to contain a coiled-coil BAR-like domain-a domain involved in endocytosis and membrane bending. ndm-knockout and Ndm-monomeric red fluorescent protein-expressing cell lines were used to establish a role for ndm in suppressing endocytosis. An increase in the rate of endocytosis and in the number of endosomes was detected in ndm(-) cells. During migration ndm(-) cells formed numerous endocytic cups instead of the broad lamellipodia structure characteristic of moving cells. A second lamellipodia-based function-cell spreading-was also defective in the ndm(-) cells. The increase in endocytosis and the defect in lamellipodia formation were associated with reduced chemotaxis in ndm(-) cells. Immunofluorescence results and glutathione S-transferase pull-down assays revealed an association of Ndm with coronin and F-actin. The results establish ndm as a gene important in regulating the balance between formation of endocytic cups and lamellipodia structures.

摘要

ampA 基因在变形虫细胞迁移中起作用。过表达 AmpA 的细胞表现出细胞迁移增加,在细菌草坪上形成大斑块。该 ampA 过表达表型的第二个位点抑制因子鉴定出一个以前未被表征的基因 ndm,本文对此进行了描述。Ndm 蛋白预测含有卷曲螺旋 BAR 样结构域,该结构域参与内吞作用和膜弯曲。ndm 敲除和 Ndm-单体红色荧光蛋白表达细胞系用于确定 ndm 在抑制内吞作用中的作用。在 ndm(-)细胞中检测到内吞作用速率增加和内体数量增加。在迁移过程中,ndm(-)细胞形成了许多胞饮杯,而不是移动细胞特有的宽片状伪足结构。ndm(-)细胞中另一个基于片状伪足的功能——细胞扩展——也存在缺陷。内吞作用的增加和片状伪足形成的缺陷与 ndm(-)细胞中趋化性降低有关。免疫荧光结果和谷胱甘肽 S-转移酶下拉测定显示 Ndm 与 coronin 和 F-肌动蛋白的关联。结果表明,ndm 是调节内吞杯和片状伪足结构形成之间平衡的重要基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3948/3431939/5d547cb3aaae/3407fig1.jpg

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