Department of Cell Biology, Max Planck Institute for Developmental Biology, 72076 Tuebingen, Germany.
Department of Plant Biology, University of Georgia, Athens, GA 30602.
Proc Natl Acad Sci U S A. 2019 Mar 19;116(12):5795-5804. doi: 10.1073/pnas.1815866116. Epub 2019 Mar 4.
In flowering plants, the asymmetrical division of the zygote is the first hallmark of apical-basal polarity of the embryo and is controlled by a MAP kinase pathway that includes the MAPKKK YODA (YDA). In , YDA is activated by the membrane-associated pseudokinase SHORT SUSPENSOR (SSP) through an unusual parent-of-origin effect: transcripts accumulate specifically in sperm cells but are translationally silent. Only after fertilization is SSP protein transiently produced in the zygote, presumably from paternally inherited transcripts. is a recently diverged, Brassicaceae-specific member of the () family. BSK proteins typically play broadly overlapping roles as receptor-associated signaling partners in various receptor kinase pathways involved in growth and innate immunity. This raises two questions: How did a protein with generic function involved in signal relay acquire the property of a signal-like patterning cue, and how is the early patterning process activated in plants outside the Brassicaceae family, where orthologs are absent? Here, we show that and , two close paralogs of that are conserved in flowering plants, are involved in several YDA-dependent signaling events, including embryogenesis. However, the contribution of SSP to YDA activation in the early embryo does not overlap with the contributions of BSK1 and BSK2. The loss of an intramolecular regulatory interaction enables SSP to constitutively activate the YDA signaling pathway, and thus initiates apical-basal patterning as soon as SSP protein is translated after fertilization and without the necessity of invoking canonical receptor activation.
在开花植物中,合子的不对称分裂是胚胎顶端-基极性的第一个标志,由包括 MAPKKK YODA(YDA)在内的 MAP 激酶途径控制。在拟南芥中,YDA 通过一种不寻常的母源效应被膜相关的假激酶 SHORT SUSPENSOR(SSP)激活:只有在受精后,来自父本的转录本才会特异性地在精子细胞中积累,但翻译沉默。只有在合子中,SSP 蛋白才会短暂产生,推测来自父本遗传的转录本。是最近分化的、仅限于十字花科的 BRASSINOSTEROID SIGNALING KINASE(BSK)家族的一个成员。BSK 蛋白通常作为各种受体激酶途径中与受体相关的信号伙伴,发挥广泛重叠的作用,这些途径参与生长和先天免疫。这提出了两个问题:一个涉及信号转导的通用功能的蛋白质如何获得信号样模式线索的性质,以及在缺乏 BRASSINOSTEROID SIGNALING KINASE 直系同源物的十字花科以外的植物中,早期模式形成过程如何被激活?在这里,我们表明,和,是 YDA 依赖性信号事件的几个信号转导事件的参与者,包括胚胎发生。然而,SSP 对早期胚胎中 YDA 激活的贡献与 BSK1 和 BSK2 的贡献并不重叠。分子内调节相互作用的丧失使 SSP 能够持续激活 YDA 信号通路,因此一旦 SSP 蛋白在受精后翻译,并且不需要调用规范的受体激活,就可以启动顶端-基极性模式。