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Yeast‐based reporter assay system for identifying the requirements of intramembrane proteolysis by signal peptide peptidase of Arabidopsis thaliana

机译:基于酵母的报告分析系统,用于鉴定拟南芥肽肽酶的蛋白质肽蛋白分解的要求

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Signal peptide peptidase (SPP) is an aspartic protease with two active sites, YD and GXGD, in the transmembrane domain. SPP cleaves signal peptides, and the released fragments play key roles in the immune system, embryo development and protein turnover in cells. Despite SPP having an important function, a general system to identify the requirements of intramembrane proteolysis by SPP has not been developed because proteolysis occurs in the membrane. In this study, we first established a reporter assay system in yeast to verify the cleavage activity of the Arabidopsis thaliana SPP (AtSPP). Next, we screened candidate substrates of AtSPP from A. thaliana pollen and roots. In the pollen, 13 signal peptides with 'pollen' and 'cell wall' as gene ontology terms were selected. In the roots, mutants overexpressing AtSPP were constructed, and gene expression changes were compared with the wild‐type. Nine signal peptides expressed in the roots were selected. Then we used the candidate substrates in our reporter assay system to determine the requirements for proteolysis by AtSPP. Fifteen of 22 signal peptides were cleaved by AtSPP. The absence of the positively charged amino acids, His and Lys on the C terminus of the signal sequence, was observed in cleaved substrates. Moreover, mutation of a helix breaker‐to‐Leu substitution in the intramembrane region in substrates prevented cleavage by AtSPP. These results indicated that substrates of AtSPP required the helix breaker structure to be cleaved.
机译:信号肽肽酶(SPP)是具有两个活性位点,Yd和GxGD的天冬氨酸蛋白酶,在跨膜结构域中。 SPP切割信号肽,并且释放的片段在细胞免疫系统中发挥关键作用,细胞中的胚胎发育和蛋白质周转。尽管SPP具有重要功能,但尚未开发出识别SPP intramemoly蛋白溶解要求的一般系统,因为在膜中发生蛋白质溶液。在这项研究中,我们首先在酵母中建立了记者测定系统,以验证拟南芥SPP(ATSPP)的切割活性。接下来,我们筛选ATSPP的候选底物从A.拟南芥花粉和根部。在花粉中,选择了具有“花粉”和“细胞壁”作为基因本体论术语的13个信号肽。在根中,构建过度表达ATSPP的突变体,并将基因表达的变化与野生型进行比较。选择在根中表达的9个信号肽。然后我们在记者测定系统中使用了候选底物,以确定ATSPP蛋白质溶解的要求。通过ATSPP切割了22个信号肽的十五个。在切割的基板中观察到在信号序列的C末端的带正电荷的氨基酸,HI和Lys的情况。此外,底物中肠道区域中的螺旋断裂剂对Leu取代的突变防止了ATSPP的切割。这些结果表明,ATSPP的基板需要弯曲螺旋断路器结构。

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