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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Pleiotropic platelet defects in mice with disrupted FOG1-NuRD interaction.
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Pleiotropic platelet defects in mice with disrupted FOG1-NuRD interaction.

机译:FOG1-NuRD相互作用受破坏的小鼠的多效性血小板缺陷。

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Understanding platelet biology has been aided by studies of mice with mutations in key megakaryocytic transcription factors. We have shown that point mutations in the GATA1 cofactor FOG1 that disrupt binding to the nucleosome remodeling and deacetylase (NuRD) complex have erythroid and megakaryocyte lineages defects. Mice that are homozygous for a FOG1 point mutation (ki/ki), which ablates FOG1-NuRD interactions, have platelets that display a gray platelet syndrome (GPS)-like macrothrombocytopenia. These platelets have few alpha-granules and an increased number of lysosomal-like vacuoles on electron microscopy, reminiscent of the platelet in patients with GATA1-related X-linked GPS. Here we further characterized the platelet defect in ki/ki mice. We found markedly deficient levels of P-selectin protein limited to megakaryocytes and platelets. Other alpha-granule proteins were expressed at normal levels and were appropriately localized to alpha-granule-like structures. Treatment of ki/ki platelets with thrombin failed to stimulate Akt phosphorylation, resulting in poor granule secretion and platelet aggregation. These studies show that disruption of the GATA1/FOG1/NuRD transcriptional system results in a complex, pleiotropic platelet defect beyond GPS-like macrothrombocytopenia and suggest that this transcriptional complex regulates not only megakaryopoiesis but also alpha-granule generation and signaling pathways required for granule secretion.
机译:对小鼠关键血小板核细胞转录因子突变的研究有助于理解血小板生物学。我们已经表明,GATA1辅因子FOG1中的点突变破坏了与核小体重塑和脱乙酰酶(NuRD)复合物的结合,具有红系和巨核细胞谱系缺陷。 FOG1点突变(ki / ki)纯合的小鼠会消除FOG1-NuRD相互作用,其血小板显示灰色血小板综合征(GPS)样大血小板减少症。在电子显微镜下,这些血小板几乎没有α颗粒,并且溶酶体样液泡数量增加,让人联想到GATA1相关X链GPS患者的血小板。在这里,我们进一步表征了ki / ki小鼠的血小板缺陷。我们发现限于巨核细胞和血小板的P-选择素蛋白水平明显不足。其他α-颗粒蛋白以正常水平表达,并适当地定位于α-颗粒样结构。用凝血酶治疗ki / ki血小板未能刺激Akt磷酸化,导致颗粒分泌不足和血小板聚集。这些研究表明,破坏GATA1 / FOG1 / NuRD转录系统会导致复杂的多效性血小板缺陷,超出GPS样大血小板减少症的范围,这表明该转录复合物不仅调节巨核细胞生成,而且还调节颗粒分泌所需的α颗粒生成和信号传导途径。

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