Departamento de Biologia, Faculdade de Filosofia, Ciências e Letras de Ribeirão Preto, Universidade de São Paulo, Ribeirão Preto 14040-901, Brazil.
PPG-Genética, Faculdade de Medicina de Ribeirão Preto, Universidade de São Paulo, Ribeirão Preto 14049-900, Brazil.
J Exp Bot. 2024 Oct 30;75(20):6312-6330. doi: 10.1093/jxb/erae337.
Successful plant reproduction depends on the adequate development of floral organs controlled by cell proliferation and other processes. The Stigma/style cell-cycle inhibitor 1 (SCI1) gene regulates cell proliferation and affects the final size of the female reproductive organ. To unravel the molecular mechanism exerted by Nicotiana tabacum SCI1 in cell proliferation control, we searched for its interaction partners through semi-in vivo pull-down experiments, uncovering a cyclin-dependent kinase, NtCDKG;2. Bimolecular fluorescence complementation and co-localization experiments showed that SCI1 interacts with NtCDKG;2 and its cognate NtCyclin L in nucleoli and splicing speckles. The screening of a yeast two-hybrid cDNA library using SCI1 as bait revealed a novel DEAD-box RNA helicase (NtRH35). Interaction between the NtCDKG;2-NtCyclin L complex and NtRH35 is also shown. Subcellular localization experiments showed that SCI1, NtRH35, and the NtCDKG;2-NtCyclin L complex associate with each other within splicing speckles. The yeast two-hybrid screening of NtCDKG;2 and NtRH35 identified the conserved spliceosome components U2a', NF-κB activating protein (NKAP), and CACTIN. This work presents SCI1 and its interactors, the NtCDKG;2-NtCyclin L complex and NtRH35, as new spliceosome-associated proteins. Our findings reveal a network of interactions and indicate that SCI1 may regulate cell proliferation through the splicing process, providing new insights into the intricate molecular pathways governing plant development.
成功的植物繁殖取决于花器官的充分发育,而花器官的发育由细胞增殖和其他过程控制。柱头/花柱细胞周期抑制剂 1(SCI1)基因调控细胞增殖,并影响雌性生殖器官的最终大小。为了揭示烟草 SCI1 在细胞增殖调控中发挥的分子机制,我们通过半体内下拉实验寻找其相互作用伙伴,发现了一个细胞周期蛋白依赖性激酶,NtCDKG;2。双分子荧光互补和共定位实验表明,SCI1 与 NtCDKG;2 及其同源 NtCyclin L 在核仁及剪接斑点中相互作用。使用 SCI1 作为诱饵筛选酵母双杂交 cDNA 文库,揭示了一种新的 DEAD-box RNA 解旋酶(NtRH35)。还显示了 NtCDKG;2-NtCyclin L 复合物与 NtRH35 之间的相互作用。亚细胞定位实验表明,SCI1、NtRH35 和 NtCDKG;2-NtCyclin L 复合物在剪接斑点中相互关联。酵母双杂交筛选 NtCDKG;2 和 NtRH35 鉴定了保守的剪接体成分 U2a'、NF-κB 激活蛋白(NKAP)和肌动蛋白。这项工作展示了 SCI1 及其相互作用物,即 NtCDKG;2-NtCyclin L 复合物和 NtRH35,作为新的剪接体相关蛋白。我们的研究结果揭示了一个相互作用网络,并表明 SCI1 可能通过剪接过程调节细胞增殖,为植物发育的复杂分子途径提供了新的见解。