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New Insight into HPts as Hubs in Poplar Cytokinin and Osmosensing Multistep Phosphorelays: Cytokinin Pathway Uses Specific HPts

机译:作为树突细胞在杨树细胞分裂素和渗透性多步磷酸酯中枢的HPts的新见解:细胞分裂素途径使用特定的HPts

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摘要

We have previously identified proteins in poplar which belong to an osmosensing (OS) signaling pathway, called a multistep phosphorelay (MSP). The MSP comprises histidine-aspartate kinases (HK), which act as membrane receptors; histidine phosphotransfer (HPt) proteins, which act as phosphorelay proteins; and response regulators (RR), some of which act as transcription factors. In this study, we identified the HK proteins homologous to the Arabidopsis cytokinin (CK) receptors, which are first partners in the poplar cytokinin MSP, and focused on specificity of these two MSPs (CK and OS), which seem to share the same pool of HPt proteins. Firstly, we isolated five CK HKs from poplar which are homologous to Arabidopsis AHK2, AHK3, and AHK4, namely, HK2, HK3a, HK3b, HK4a, HK4b. These HKs were shown to be functional kinases, as observed in a functional complementation of a yeast HK deleted strain. Moreover, one of these HKs, HK4a, was shown to have kinase activity dependent on the presence of CK. Exhaustive interaction tests between these five CK HKs and the 10 HPts characterized in poplar were performed using two-hybrid and BiFC experiments. The resulting partnership was compared to that previously identified between putative osmosensors HK1a/1b and HPt proteins. Finally, in planta coexpression analysis of genes encoding these potential partners revealed that almost all HPts are coexpressed with CK HKs in four different poplar organs. Overall, these results allowed us to unravel the common and specific partnerships existing between OS and CK MSP in .
机译:我们先前已经确定了杨树中属于渗透压(OS)信号传导途径的蛋白质,称为多步磷酸化(MSP)。 MSP包含组氨酸-天冬氨酸激酶(HK),其充当膜受体。组氨酸磷酸转移(HPt)蛋白,它是磷蛋白。和响应调节器(RR),其中一些充当转录因子。在这项研究中,我们鉴定了与拟南芥细胞分裂素(CK)受体同源的HK蛋白,拟南芥细胞分裂素(CK)受体是杨树细胞分裂素MSP的第一个伙伴,并着眼于这两个MSP(CK和OS)的特异性,它们似乎共享相同的库HPt蛋白。首先,我们从杨树中分离到与拟南芥AHK2,AHK3和AHK4同源的五个CK HK,即HK2,HK3a,HK3b,HK4a,HK4b。如在酵母HK缺失菌株的功能互补中观察到的,这些HK显示为功能性激酶。此外,这些HK之一,HK4a,显示具有依赖于CK的存在的激酶活性。使用两个杂交和BiFC实验进行了这五个CK HK和以杨树为特征的10个HPts之间的穷举性相互作用测试。将由此产生的伙伴关系与推定的渗透压传感器HK1a / 1b和HPt蛋白之间先前确定的伙伴关系进行了比较。最后,在植物共表达分析中,编码这些潜在伴侣的基因表明,几乎所有HPts在四个不同的杨树器官中均与CK HK共表达。总体而言,这些结果使我们能够弄清OS和CK MSP之间存在的常见和特定的伙伴关系。

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