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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Serum response factor is an essential transcription factor in megakaryocytic maturation.
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Serum response factor is an essential transcription factor in megakaryocytic maturation.

机译:血清反应因子是巨核细胞成熟中必不可少的转录因子。

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Serum response factor (Srf) is a MADS-box transcription factor that is critical for muscle differentiation. Its function in hematopoiesis has not yet been revealed. Mkl1, a cofactor of Srf, is part of the t(1;22) translocation in acute megakaryoblastic leukemia, and plays a critical role in megakaryopoiesis. To test the role of Srf in megakaryocyte development, we crossed Pf4-Cre mice, which express Cre recombinase in cells committed to the megakaryocytic lineage, to Srf(F/F) mice in which functional Srf is no longer expressed after Cre-mediated excision. Pf4-Cre/Srf(F/F) knockout (KO) mice are born with normal Mendelian frequency, but have significant macrothrombocytopenia with approximately 50% reduction in platelet count. In contrast, the BM has increased number and percentage of CD41(+) megakaryocytes (WT: 0.41% +/- 0.06%; KO: 1.92% +/- 0.12%) with significantly reduced ploidy. KO mice show significantly increased megakaryocyte progenitors in the BM by FACS analysis and CFU-Mk. Megakaryocytes lacking Srf have abnormal stress fiber and demarcation membrane formation, and platelets lacking Srf have abnormal actin distribution. In vitro and in vivo assays reveal platelet function defects in KO mice. Critical actin cytoskeletal genes are down-regulated in KO megakaryocytes. Thus, Srf is required for normal megakaryocyte maturation and platelet production partly because of regulation of cytoskeletal genes.
机译:血清反应因子(Srf)是MADS-box转录因子,对肌肉分化至关重要。其在造血功能中的作用尚未被揭示。 Mkl1,Srf的辅助因子,是急性巨核细胞白血病t(1; 22)易位的一部分,并且在巨核细胞生成中起关键作用。为了测试Srf在巨核细胞发育中的作用,我们将Pf4-Cre小鼠与在Cre介导的切除后不再表达功能性Srf的Srf(F / F)小鼠杂交,将其在致力于巨核细胞谱系的细胞中表达Cre重组酶。 。 Pf4-Cre / Srf(F / F)敲除(KO)小鼠出生时的孟德尔频率正常,但具有明显的大血小板减少症,血小板计数减少了约50%。相反,BM增加了CD41(+)巨核细胞的数量和百分比(WT:0.41%+/- 0.06%; KO:1.92%+/- 0.12%),倍性显着降低。通过FACS分析和CFU-Mk,KO小鼠的BM中巨核细胞祖细胞显着增加。缺乏Srf的巨核细胞具有异常的应力纤维和分界膜形成,缺乏Srf的血小板具有异常的肌动蛋白分布。体外和体内测定揭示了KO小鼠的血小板功能缺陷。关键的肌动蛋白细胞骨架基因在KO巨核细胞中被下调。因此,Srf是正常巨核细胞成熟和血小板产生所必需的,部分原因是细胞骨架基因的调控。

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