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PsRBR1 encodes a pea retinoblastoma-related protein that is phosphorylated in axillary buds during dormancy-to-growth transition

机译:PsRBR1编码豌豆视网膜母细胞瘤相关蛋白,该蛋白在休眠到生长的过渡过程中在腋芽中被磷酸化

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摘要

In intact plants, cells in axillary buds are arrested at the G1 phase of the cell cycle during dormancy. In mammalian cells, the cell cycle is suppressed at the G1 phase by the activities of retinoblastoma tumor suppressor gene (RB) family proteins, depending on their phosphorylation state. Here, we report the isolation of a pea cDNA clone encoding an RB-related protein (PsRBR1, Accession No. AB012024) with a high degree of amino acid conservation in comparison with RB family proteins. PsRBR1 protein was detected as two polypeptides using an anti-PsRBR1 antibody in dormant axillary buds, whereas it was detected as three polypeptides, which were the same two polypeptides and another larger polypeptide 2 h after terminal decapitation. Both in vitro-synthesized PsPRB1 protein and lambda protein phosphatase-treated PsRBR1 protein corresponded to the smallest polypeptide detected by anti-PsRBR1 antibody, suggesting that the three polypeptides correspond to non-phosphorylated form of PsRBR1 protein, and lower- and higher-molecular mass forms of phosphorylated PsRBR1 protein. Furthermore, in vivo labeling with [32P]-inorganic phosphate indicated that PsRBR1 protein was more phosphorylated before mRNA accumulation of cell cycle regulatory genes such as PCNA. Together these findings suggest that dormancy-to-growth transition in pea axillary buds is regulated by molecular mechanisms of cell cycle control similar to those in mammals, and that the PsRBR1 protein has an important role in suppressing the cell cycle during dormancy in axillary buds.
机译:在完整的植物中,休眠期间腋芽中的细胞被阻滞在细胞周期的G1期。在哺乳动物细胞中,视网膜母细胞瘤抑癌基因(RB)家族蛋白的活性取决于其磷酸化状态,从而在G1期抑制了细胞周期。在这里,我们报告了与RB家族蛋白相比,豌豆cDNA克隆的分离,该克隆编码具有高度氨基酸保守性的RB相关蛋白(PsRBR1,保藏号AB012024)。在休眠的腋芽中,使用抗PsRBR1抗体将PsRBR1蛋白检测为两个多肽,而将其检测为三个多肽,它们在末端灭绝后2小时是相同的两个多肽,另一个是较大的多肽。体外合成的PsPRB1蛋白和经lambda蛋白磷酸酶处理的PsRBR1蛋白均对应于抗PsRBR1抗体检测到的最小多肽,这表明这三个多肽对应于PsRBR1蛋白的非磷酸化形式,分子量较低且分子量较高形式的磷酸化PsRBR1蛋白。此外,在体内用[32P]-无机磷酸酯标记表明,在PCNA等细胞周期调控基因的mRNA积累之前,PsRBR1蛋白被磷酸化程度更高。这些发现共同表明,豌豆腋芽的休眠到生长过渡受细胞周期控制的分子机制调控,类似于哺乳动物,并且PsRBR1蛋白在抑制腋芽休眠期间的细胞周期中具有重要作用。

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