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UBIQUITIN-SPECIFIC PROTEASE14 Interacts with ULTRAVIOLET-B INSENSITIVE4 to Regulate Endoreduplication and Cell and Organ Growth in Arabidopsis

机译:泛素特异性蛋白14与ULTRAVIOLET-B INSENSITIVETIVE4相互作用调节拟南芥的核内复制以及细胞和器官的生长

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摘要

Organ growth is determined by a coordinated combination of cell proliferation and cell growth and differentiation. Endoreduplication is often coupled with cell growth and differentiation, but the genetic and molecular mechanisms that link endoreduplication with cell and organ growth are largely unknown. Here, we describe UBIQUITIN-SPECIFIC PROTEASE14 (UBP14), encoded by the DA3 gene, which functions as a negative regulator of endoreduplication. The Arabidopsis thaliana da3-1 mutant shows large cotyledons, leaves, and flowers with higher ploidy levels. UBP14 acts along with UV-B-INSENSITIVE4 (UVI4), an inhibitor of the anaphase-promoting complex/cyclosome () ubiquitin ligase, to repress endoreduplication. Also, UBP14 functions antagonistically with CELL CYCLE SWITCH52 A1 (CCS52A1), an activator of , to regulate endoreduplication. UBP14 physically associates with UVI4 both in vitro and in vivo but does not directly interact with CCS52A1. Further results reveal that UBP14 influences the stability of cyclin A2;3 (CYCA2;3) and cyclin-dependent kinase B1;1 (CDKB1;1), two downstream components of the . Thus, our findings show how endoreduplication is linked with cell and organ growth by revealing important genetic and molecular functions for the ubiquitin-specific protease UBP14 and for the key cell cycle regulators UVI4, CCS52A1, CYCA2;3, and CDKB1;1.
机译:器官的生长取决于细胞增殖与细胞生长与分化的协调结合。核内复制通常与细胞生长和分化结合,但是将核内复制与细胞和器官生长联系起来的遗传和分子机制在很大程度上尚不清楚。在这里,我们描述由DA3基因编码的泛素特异性蛋白酶14(UBP14),其作为内复制的负调节剂。拟南芥da3-1突变体显示较大的子叶,叶和花具有较高的倍性水平。 UBP14与UV-B-INSENSITIVE4(UVI4)(促进后期合成的复合物/环体(泛素)连接酶的抑制剂)一起起作用,以抑制内复制。此外,UBP14与CELL CYCLE SWITCH52 A1(CCS52A1)(一种的激活剂)起拮抗作用,以调节内复制。 UBP14在体外和体内均与UVI4物理缔合,但不与CCS52A1直接相互作用。进一步的结果表明,UBP14影响细胞周期蛋白A2; 3(CYCA2; 3)和细胞周期蛋白依赖性激酶B1; 1(CDKB1; 1)(两个下游成分)的稳定性。因此,我们的发现通过揭示遍在蛋白特异性蛋白酶UBP14和关键细胞周期调节剂UVI4,CCS52A1,CYCA2; 3和CDKB1; 1的重要遗传和分子功能,表明内复制与细胞和器官的生长如何相关。

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