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质体定位的光敏色素 B 的 YHB 变体保留光形态建成信号活性。

A cytosol-tethered YHB variant of phytochrome B retains photomorphogenic signaling activity.

机构信息

Department of Molecular and Cellular Biology, University of California, 1 Shields Avenue, Davis, CA, 95616, USA.

出版信息

Plant Mol Biol. 2024 Jun 14;114(4):72. doi: 10.1007/s11103-024-01469-2.

Abstract

The red and far-red light photoreceptor phytochrome B (phyB) transmits light signals following cytosol-to-nuclear translocation to regulate transcriptional networks therein. This necessitates changes in protein-protein interactions of phyB in the cytosol, about which little is presently known. Via introduction of a nucleus-excluding G767R mutation into the dominant, constitutively active phyB (YHB) allele, we explore the functional consequences of expressing a cytosol-localized YHB variant in transgenic Arabidopsis seedlings. We show that YHB elicits selective constitutive photomorphogenic phenotypes in dark-grown phyABCDE null mutants, wild type and other phy-deficient genotypes. These responses include light-independent apical hook opening, cotyledon unfolding, seed germination and agravitropic hypocotyl growth with minimal suppression of hypocotyl elongation. Such phenotypes correlate with reduced PIF3 levels, which implicates cytosolic targeting of PIF3 turnover or PIF3 translational inhibition by YHB. However, as expected for a cytoplasm-tethered phyB, YHB elicits reduced light-mediated signaling activity compared with similarly expressed wild-type phyB in phyABCDE mutant backgrounds. YHB also interferes with wild-type phyB light signaling, presumably by formation of cytosol-retained and/or otherwise inactivated heterodimers. Our results suggest that cytosolic interactions with PIFs play an important role in phyB signaling even under physiological conditions.

摘要

红光和远红光光受体光敏色素 B(phyB)在细胞质到核内易位后传递光信号,以调节核内的转录网络。这需要在细胞质中改变 phyB 的蛋白质-蛋白质相互作用,但目前对此知之甚少。通过在显性、组成型激活的 phyB(YHB)等位基因中引入核排斥 G767R 突变,我们探索了在转基因拟南芥幼苗中表达定位于细胞质的 YHB 变体的功能后果。我们表明,YHB 在黑暗生长的 phyABCDE 缺失突变体、野生型和其他 phy 缺陷基因型中引发了选择性的组成型光形态建成表型。这些反应包括不依赖光的顶端钩打开、子叶展开、种子萌发和重力非依赖性下胚轴生长,而下胚轴伸长受到最小抑制。这些表型与 PIF3 水平降低相关,这暗示了 PIF3 周转或 YHB 对 PIF3 翻译抑制的细胞质靶向。然而,由于 YHB 是一种与细胞质相连的 phyB,与类似表达的野生型 phyB 相比,在 phyABCDE 突变体背景下,YHB 引发的光介导信号活性降低。YHB 还干扰野生型 phyB 光信号,可能是通过形成细胞质保留和/或失活的异二聚体。我们的结果表明,即使在生理条件下,细胞质与 PIFs 的相互作用在 phyB 信号传导中也起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39e4/11178650/c433149163f3/11103_2024_1469_Fig1_HTML.jpg

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