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Interactions among HCLS1 HAX1 and LEF-1 proteins are essential forG-CSF–triggered granulopoiesis

机译:中HCLs1HaX1和互动LEF-1蛋白是必需的G-CsF-触发粒

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摘要

We found that hematopoietic cell–specific Lyn substrate 1 (HCLS1 or HS1) is highly expressed in human myeloid cells and that stimulation with granulocyte colony-stimulating factor (G-CSF) leads to HCLS1 phosphorylation. HCLS1 binds the transcription factor lymphoid-enhancer binding factor 1 (LEF-1), transporting LEF-1 into the nucleus upon G-CSF stimulation and inducing LEF-1 autoregulation. In patients with severe congenital neutropenia, inherited mutations in the gene encoding HCLS1-associated protein X-1 (HAX1) lead to profound defects in G-CSF–triggered phosphorylation of HCLS1 and subsequently to reduced autoregulation and expression of LEF-1. Consistent with these results, HCLS1-deficient mice are neutropenic. In bone marrow biopsies of the majority of tested patients with acute myeloid leukemia, HCLS1 protein expression is substantially elevated, associated with high levels of G-CSF synthesis and, in some individuals, a four-residue insertion in a proline-rich region of HCLS1 protein known to accelerate intracellular signaling. These data demonstrate the importance of HCLS1 in myelopoiesis in vitro and in vivo.
机译:我们发现,造血细胞特异性Lyn底物1(HCLS1或HS1)在人骨髓细胞中高度表达,而粒细胞集落刺激因子(G-CSF)刺激导致HCLS1磷酸化。 HCLS1与转录因子淋巴增强因子结合因子1(LEF-1)结合,在G-CSF刺激下将LEF-1转运到细胞核中并诱导LEF-1自动调节。在患有严重先天性中性粒细胞减少症的患者中,编码HCLS1相关蛋白X-1(HAX1)的基因中的遗传突变会导致G-CSF触发的HCLS1磷酸化的严重缺陷,进而导致LEF-1的自动调节和表达降低。与这些结果一致,HCLS1缺陷型小鼠是中性粒细胞减少的。在大多数接受测试的急性髓性白血病患者的骨髓活检中,HCLS1蛋白表达显着升高,与高水平的G-CSF合成有关,并且在某些个体中,在富含脯氨酸的HCLS1区域中插入了四个残基。已知可加速细胞内信号传导的蛋白质。这些数据证明了HCLS1在体外和体内在骨髓生成中的重要性。

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