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Limited redundancy in phosphorylation of retinoblastoma tumor suppressor protein by cyclin-dependent kinases in acute lymphoblastic leukemia

机译:急性淋巴细胞白血病中细胞周期蛋白依赖性激酶抑制视网膜母细胞瘤抑癌蛋白磷酸化的冗余度

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摘要

Cyclin-dependent kinases (CDKs) successively phosphorylate the retinoblastoma protein (RB) at the restriction point in G1 phase. Hyperphosphorylation results in functional inactivation of RB, activation of the E2F transcriptional program, and entry of cells into S phase. RB unphosphorylated at serine 608 has growth suppressive activity. Phosphorylation of serines 608/612 inhibits binding of E2F-1 to RB. In Nalm-6 acute lymphoblastic leukemia extracts, serine 608 is phosphorylated by CDK4/6 complexes but not by CDK2. We reasoned that phosphorylation of serines 608/612 by redundant CDKs could accelerate phospho group formation and determined which G1 CDK contributes to serine 612 phosphorylation. Here, we report that CDK4 complexes from Nalm-6 extracts phosphorylated in vitro the CDK2-preferred serine 612, which was inhibited by p16INK4a, and fascaplysin. In contrast, serine 780 and serine 795 were efficiently phosphorylated by CDK4 but not by CDK2. The data suggest that the redundancy in phosphorylation of RB by CDK2 and CDK4 in Nalm-6 extracts is limited. Serine 612 phosphorylation by CDK4 also occurred in extracts of childhood acute lymphoblastic leukemia cells but not in extracts of mobilized CD34+ hemopoietic progenitor cells. This phenomenon could contribute to the commitment of childhood acute lymphocytic leukemia cells to proliferate and explain their refractoriness to differentiation-inducing agents.
机译:细胞周期蛋白依赖性激酶(CDK)在G1期的限制点连续磷酸化成视网膜细胞瘤蛋白(RB)。过度磷酸化导致RB功能失活,E2F转录程序激活以及细胞进入S期。丝氨酸608上未磷酸化的RB具有生长抑制活性。丝氨酸608/612的磷酸化抑制了E2F-1与RB的结合。在Nalm-6急性淋巴细胞白血病提取物中,丝氨酸608被CDK4 / 6复合物磷酸化,但未被CDK2磷酸化。我们认为多余的CDK将丝氨酸608/612磷酸化可以加速磷酸基团的形成,并确定哪个G1 CDK有助于丝氨酸612磷酸化。在这里,我们报道了从Nalm-6提取的CDK4复合物在体外将被p16INK4a和fascaplysin抑制的CDK2优选的丝氨酸612磷酸化。相反,丝氨酸780和丝氨酸795被CDK4有效地磷酸化,而未被CDK2磷酸化。数据表明,Nalm-6提取物中CDK2和CDK4在RB磷酸化中的冗余度是有限的。 CDK4的丝氨酸612磷酸化也发生在儿童急性淋巴细胞白血病细胞的提取物中,但未发生在动员的CD34 +造血祖细胞的提取物中。这种现象可能有助于儿童急性淋巴细胞白血病细胞的增殖,并解释了它们对分化诱导剂的抵抗力。

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