首页> 外文期刊>Journal of Cell Science >Rac2D57N, a dominant inhibitory Rac2 mutant that inhibits p38 kinase signaling and prevents surface ruffling in bone-marrow-derived macrophages.
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Rac2D57N, a dominant inhibitory Rac2 mutant that inhibits p38 kinase signaling and prevents surface ruffling in bone-marrow-derived macrophages.

机译:Rac2D57N,一种主要的抑制性Rac2突变体,可抑制p38激酶信号传导并防止骨髓巨噬细胞中的表面起皱。

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摘要

Rac2 is a Rho GTPase that is expressed in cells of hematopoietic origin, including neutrophils and macrophages. We recently described an immunodeficient patient with severe, recurrent bacterial infections that had a point mutation in one allele of the Rac2 gene, resulting in the substitution of aspartate 57 with asparagine. To ascertain further the effects of Rac2D57N in leukocytes, Rac2D57N was expressed in primary murine bone-marrow-derived macrophages (cells that we show express approximately equal amounts of Rac1 and Rac2). Rac2D57N expression in macrophages inhibited membrane ruffling. Rac2D57N expression inhibited the formation of macropinosomes, demonstrating a functional effect of the loss of surface membrane dynamics. Surprisingly, Rac2D57N induced an elongated, spread morphology but did not affect microtubule networks. Rac2D57N also inhibited lipopolysaccharide-stimulated p38 kinase activation. Examination of guanine nucleotide binding to recombinant Rac2D57N revealed reduced dissociation of GDP and association of GTP. Coimmunoprecipitation studies of Rac2D57N with RhoGDIalpha and Tiam1 demonstrated increased binding of Rac2D57N to these upstream regulators of Rac signaling relative to the wild type. Enhanced binding of Rac2D57N to its upstream regulators would inhibit Rac-dependent effects on actin cytoskeletal dynamics and p38 kinase signaling.
机译:Rac2是Rho GTP酶,在造血起源的细胞(包括嗜中性粒细胞和巨噬细胞)中表达。我们最近描述了一名患有严重反复性细菌感染的免疫缺陷患者,该患者在Rac2基因的一个等位基因中存在点突变,导致天冬氨酸57被天冬酰胺取代。为了进一步确定Rac2D57N在白细胞中的作用,Rac2D57N在原代小鼠骨髓来源的巨噬细胞中表达(我们显示的细胞表达的Rac1和Rac2数量大致相等)。 Rac2D57N在巨噬细胞中的表达抑制膜波纹。 Rac2D57N的表达抑制了巨胞体的形成,证明了表面膜动力学丧失的功能作用。出乎意料的是,Rac2D57N诱导了伸长的,散布的形态,但没有影响微管网络。 Rac2D57N还抑制脂多糖刺激的p38激酶激活。鸟嘌呤核苷酸与重组Rac2D57N结合的检查表明减少了GDP的解离和GTP的关联。 Rac2D57N与RhoGDIalpha和Tiam1的共免疫沉淀研究表明,相对于野生型,Rac2D57N与Rac信号的这些上游调节因子的结合增加。 Rac2D57N与其上游调节剂的增强结合将抑制Rac依赖于肌动蛋白细胞骨架动力学和p38激酶信号传导。

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