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通过对原代小鼠中性粒细胞中的基因表达沉默揭示 G 蛋白亚基β1 和β2 在中性粒细胞功能中的不同作用。

Different roles of G protein subunits beta1 and beta2 in neutrophil function revealed by gene expression silencing in primary mouse neutrophils.

机构信息

Department of Pharmacology, Yale School of Medicine, New Haven, Connecticut 06520, USA.

出版信息

J Biol Chem. 2010 Aug 6;285(32):24805-14. doi: 10.1074/jbc.M110.142885. Epub 2010 Jun 4.

Abstract

Neutrophils play important roles in host innate immunity and various inflammation-related diseases. In addition, neutrophils represent an excellent system for studying directional cell migration. However, neutrophils are terminally differentiated cells that are short lived and refractory to transfection; thus, they are not amenable for existing gene silencing techniques. Here we describe the development of a method to silence gene expression efficiently in primary mouse neutrophils. A mouse stem cell virus-based retroviral vector was modified to express short hairpin RNAs and fluorescent marker protein at high levels in hematopoietic cells and used to infect mouse bone marrow cells prior to reconstitution of the hematopoietic system in lethally irradiated mice. This method was used successfully to silence the expression of Gbeta(1) and/or Gbeta(2) in mouse neutrophils. Knockdown of Gbeta(2) appeared to affect primarily the directionality of neutrophil chemotaxis rather than motility, whereas knockdown of Gbeta(1) had no significant effect. However, knockdown of both Gbeta(1) and Gbeta(2) led to significant reduction in motility and responsiveness. In addition, knockdown of Gbeta(1) but not Gbeta(2) inhibited the ability of neutrophils to kill ingested bacteria, and only double knockdown resulted in significant reduction in bacterial phagocytosis. Therefore, we have developed a short hairpin RNA-based method to effectively silence gene expression in mouse neutrophils for the first time, which allowed us to uncover divergent roles of Gbeta(1) and Gbeta(2) in the regulation of neutrophil functions.

摘要

中性粒细胞在宿主固有免疫和各种炎症相关疾病中发挥重要作用。此外,中性粒细胞是研究定向细胞迁移的理想系统。然而,中性粒细胞是终末分化的细胞,寿命短,转染困难;因此,它们不适合现有的基因沉默技术。在这里,我们描述了一种有效沉默原代小鼠中性粒细胞基因表达的方法。一种基于小鼠干细胞病毒的逆转录病毒载体被修饰,以在造血细胞中高水平表达短发夹 RNA 和荧光标记蛋白,并在致死性辐照小鼠的造血系统重建之前用于感染鼠骨髓细胞。该方法成功地用于沉默小鼠中性粒细胞中 Gbeta(1)和/或 Gbeta(2)的表达。Gbeta(2)的敲低似乎主要影响中性粒细胞趋化性的方向性,而不是运动性,而 Gbeta(1)的敲低则没有显著影响。然而,Gbeta(1)和 Gbeta(2)的同时敲低导致运动性和反应性显著降低。此外,Gbeta(1)的敲低而不是 Gbeta(2)的敲低抑制了中性粒细胞吞噬吞噬细菌的能力,只有双重敲低才导致细菌吞噬作用的显著减少。因此,我们首次开发了一种基于短发夹 RNA 的方法,有效地沉默了小鼠中性粒细胞中的基因表达,这使我们能够揭示 Gbeta(1)和 Gbeta(2)在调节中性粒细胞功能方面的不同作用。

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