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Multiple phosphorylation sites are important for RUNX1 activity in early hematopoiesis and T-cell differentiation

机译:多个磷酸化站点是很重要的RUNX1活动早期造血和t细胞分化

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摘要

RUNX1 is essential for definitive hematopoiesis and T-cell differentiation. It has been shown that RUNX1 is phosphorylated at specific serine and threonine residues by several kinase families. However, it remains unclear whether RUNX1 phosphorylation is absolutely required for its biological functions. Here, we evaluated hematopoietic activities of RUNX1 mutants with serine (S)/threonine (T) to alanine (A), aspartic acid (D), or glutamic acid (E) mutations at phosphorylation sites using primary culture systems. Consistent with the results of knockin mice, RUNX1-2A, carrying two phospho-deficient mutations at S276 and S293, retained hematopoietic activity. RUNX1-4A, carrying four mutations at S276, S293, T300, and S303, showed impaired T-cell differentiation activity, but retained the ability to rescue the defective early hematopoiesis of Runx1-deficient cells. Notably, RUNX1-5A, carrying five mutations at S276, S293, T300, S303, and S462, completely lost its hematopoietic activity. In contrast, the phospho-mimic proteins RUNX1-4D/E and RUNX1-5D/E exhibited normal function. Our study identifies multiple phosphorylation sites that are indispensable for RUNX1 activity in hematopoiesis.
机译:RUNX1对确定的造血作用至关重要和t细胞分化。RUNX1是在特定的丝氨酸磷酸化由几个激酶和苏氨酸残基家庭。RUNX1磷酸化是绝对需要的它的生物功能。造血活动RUNX1突变体丝氨酸/苏氨酸(S) (T)丙氨酸(A)、天冬氨酸的酸(D)、谷氨酸(E)突变磷酸化网站使用的主要文化系统。老鼠,RUNX1-2A,带着两个phospho-deficient突变S276 S293,保留造血活动。突变在S276 S293、T300和S303,显示受损的t细胞分化活动,但是保留拯救缺陷的能力Runx1-deficient早期造血细胞。值得注意的是,RUNX1-5A,带着五个突变S276、S293 T300, S303 S462,完全迷失了方向其造血活动。phospho-mimic蛋白质RUNX1-4D / E和RUNX1-5D / E表现出正常功能。多个磷酸化的网站不可或缺的RUNX1活动造血作用。

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