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SIAMESE, a plant-specific cell cycle regulator, controls endoreplication onset in Arabidopsis thaliana

机译:sIamEsE是一种植物特异性细胞周期调节因子,可控制拟南芥中的核内复制

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摘要

Recessive mutations in the SIAMESE (SIM) gene of Arabidopsis thaliana result in multicellular trichomes harboring individual nuclei with a low ploidy level, a phenotype strikingly different from that of wild-type trichomes, which are single cells with a nuclear DNA content of similar to 16C to 32C. These observations suggested that SIM is required to suppress mitosis as part of the switch to endoreplication in trichomes. Here, we demonstrate that SIM encodes a nuclear-localized 14-kD protein containing a cyclin binding motif and a motif found in ICK/KRP (for Interactors of Cdc2 kinase/Kip-related protein) cell cycle inhibitor proteins. Accordingly, SIM was found to associate with D-type cyclins and CDKA;1. Homologs of SIM were detected in other dicots and in monocots but not in mammals or fungi. SIM proteins are expressed throughout the shoot apical meristem, in leaf primordia, and in the elongation zone of the root and are localized to the nucleus. Plants overexpressing SIM are slow-growing and have narrow leaves and enlarged epidermal cells with an increased DNA content resulting from additional endocycles. We hypothesize that SIM encodes a plant-specific CDK inhibitor with a key function in the mitosis-to-endoreplication transition.
机译:拟南芥SIAMESE(SIM)基因中的隐性突变导致多细胞毛状体携带单个倍数水平较低的核,其表型与野生型毛状体显着不同,后者是核DNA含量与16C相似的单细胞至32C。这些观察结果表明,SIM需要抑制有丝分裂,这是毛状体向内复制转换的一部分。在这里,我们证明SIM编码包含细胞周期蛋白结合基序和ICK / KRP(用于Cdc2激酶/ Kip相关蛋白的相互作用物)细胞周期抑制剂蛋白中发现的基序的核定位14-kD蛋白。因此,发现SIM与D型细胞周期蛋白和CDKA相关; 1。在其他双子叶植物和单子叶植物中检测到SIM的同系物,但在哺乳动物或真菌中未检测到。 SIM蛋白在整个茎顶分生组织,叶原基和根的延伸区中表达,并位于细胞核中。过表达SIM的植物生长缓慢,叶片狭窄,表皮细胞增大,而额外的内循环导致DNA含量增加。我们假设SIM编码一种植物特有的CDK抑制剂,在有丝分裂向内复制的过渡过程中起关键作用。

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