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Reduction of Cell Surface Glycosylphosphatidylinositol Conjugates in Entamoeba histolytica by Antisense Blocking of E. histolytica GlcNAc-Phosphatidylinositol Deacetylase Expression: Effect on Cell Proliferation Endocytosis and Adhesion to Target Cells

机译:通过反义阻止组织溶大肠杆菌GlcNAc-磷脂酰肌醇脱乙酰酶表达减少细胞表面糖基磷脂酰肌醇结合在组织变形虫中的表达:对细胞增殖内吞作用和对靶细胞的粘附的影响。

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摘要

Glycosylphosphatidylinositol (GPI)-anchored molecules such as cell surface Gal/GalNAc lectin and proteophosphoglycans of the protozoan parasite Entamoeba histolytica are thought to be involved in pathogenesis. Here, we report the identification of genes that may be involved in the GPI biosynthetic pathway of E. histolytica by use of bioinformatic tools applied to the recently published genome sequence. Of the genes identified, one of the early genes, GlcNAc-phosphatidylinositol deacetylase (PIG-L), was partially characterized. Cell lines deficient in E. histolytica PIG-L (EhPL-AS) or overproducing it (EhPL-S) were generated by expressing the gene in the antisense or sense orientation, respectively, in a tetracycline-inducible system. The overexpressing cells showed higher EhPIG-L activity and increased production of GlcN-PI. Conversely, cells expressing the antisense RNA displayed reduced GlcN-PI production. The total number of GPI-containing molecules was also reduced in these cells, as demonstrated by Alexa 488 fluorescently labeled proaerolysin labeling. The distribution of GPI-linked PPG and Gal/GalNAc lectin was altered in the tetracycline-induced EhPL-AS cell lines. Further, the antisense-blocked cells showed 36% suppression of cell growth, 50 to 60% inhibition of fluid phase endocytosis, and about 50% inhibition of adhesion to target cells. Therefore, our data suggest the importance of GPI anchors in regulating some of the events in amoebic pathogenesis. They also demonstrated the use of antisense RNA-mediated inhibition of GPI biosynthetic enzymes as an approach to decrease the amount of GPI conjugates in E. histolytica.
机译:认为糖基磷脂酰肌醇(GPI)锚定的分子,例如细胞表面的Gal / GalNAc凝集素和原生动物寄生虫组织变形虫的蛋白磷酸聚糖,都参与了发病机理。在这里,我们报告通过使用应用于最近发布的基因组序列的生物信息学工具,鉴定可能参与组织溶大肠杆菌的GPI生物合成途径的基因的鉴定。在鉴定出的基因中,部分早期基因是GlcNAc-磷脂酰肌醇脱乙酰酶(PIG-L)。通过在四环素诱导的系统中分别以反义或有义方向表达基因来产生缺乏组织溶性大肠杆菌PIG-L(EhPL-AS)或过量生产的细胞系(EhPL-S)。过表达的细胞显示出较高的EhPIG-L活性和增加的GlcN-PI的产生。相反,表达反义RNA的细胞显示出减少的GlcN-PI产生。这些细胞中含有GPI的分子总数也减少了,如Alexa 488荧光标记的原气溶素标记。在四环素诱导的EhPL-AS细胞系中,GPI连接的PPG和Gal / GalNAc凝集素的分布发生了变化。此外,反义阻断的细胞显示出36%的细胞生长抑制,50%至60%的液相内吞作用抑制以及约50%的对靶细胞粘附的抑制。因此,我们的数据表明,GPI锚在调节阿米巴病发病机制中的某些事件方面的重要性。他们还证明了反义RNA介导的GPI生物合成酶抑制作用的使用,以减少组织溶大肠杆菌中GPI缀合物的数量。

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