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Salt stress responses in Arabidopsis utilize a signal transduction pathway related to endoplasmic reticulum stress signaling

机译:拟南芥中的盐胁迫响应利用与内质网胁迫信号转导相关的信号转导途径

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摘要

We describe a signaling pathway that mediates salt stress responses in Arabidopsis. The response is mechanistically related to endoplasmic reticulum (ER) stress responses described in mammalian systems. Such responses involve processing and relocation to the nucleus of ER membrane-associated transcription factors to activate stress response genes. The salt stress response in Arabidopsis requires a subtilisin-like serine protease (AtS1P), related to mammalian S1P and a membrane-localized b-ZIP transcription factor, AtbZIP17, a predicted type-II membrane protein with a canonical S1P cleavage site on its lumen-facing side and a b-ZIP domain on its cytoplasmic side. In response to salt stress, it was found that myc-tagged AtbZIP17 was cleaved in an AtS1P-dependent process. To show that AtS1P directly targets AtbZIP17, cleavage was also demonstrated in an in vitro pull-down assay with agarose bead-immobilized AtS1P. Under salt stress conditions, the N-terminal fragment of AtbZIP17 tagged with GFP was translocated to the nucleus. The N-terminal fragment bearing the bZIP DNA binding domain was also found to possess transcriptional activity that functions in yeast. In Arabidopsis, AtbZIP17 activation directly or indirectly upregulated the expression of several salt stress response genes, including the homeodomain transcription factor ATHB-7. Upregulation of these genes by salt stress was blocked by T-DNA insertion mutations in AtS1P and AtbZIP17. Thus, salt stress induces a signaling cascade involving the processing of AtbZIP17, its translocation to the nucleus and the upregulation of salt stress genes.
机译:我们描述了介导拟南芥中盐胁迫响应的信号通路。该响应与哺乳动物系统中描述的内质网(ER)应力响应在机械上相关。此类反应涉及ER膜相关转录因子的加工和细胞核重定位,以激活应激反应基因。拟南芥中的盐胁迫响应需要与哺乳动物S1P相关的枯草杆菌蛋白酶样丝氨酸蛋白酶(AtS1P)和膜定位的b-ZIP转录因子AtbZIP17,其是预测的II型膜蛋白,其管腔上具有典型的S1P切割位点。面向的一面和一个b-ZIP结构域在其细胞质的一面。响应盐胁迫,发现myc标记的AtbZIP17在AtS1P依赖过程中被切割。为了显示AtS1P直接靶向AtbZIP17,在用琼脂糖珠固定的AtS1P进行的体外下拉测定中也证实了切割。在盐胁迫条件下,标有GFP的AtbZIP17的N端片段易位至细胞核。还发现带有bZIP DNA结合结构域的N端片段具有在酵母中起作用的转录活性。在拟南芥中,AtbZIP17激活直接或间接上调了几种盐胁迫反应基因的表达,包括同源结构域转录因子ATHB-7。盐胁迫对这些基因的上调被AtS1P和AtbZIP17中的T-DNA插入突变所阻止。因此,盐胁迫诱导信号转导级联,涉及AtbZIP17的加工,其易位至细胞核以及盐胁迫基因的上调。

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