Centre for Integrative Genomics, Faculty of Biology and Medicine, University of Lausanne, Génopode Building, Lausanne, CH-1015, Switzerland.
Institute of Molecular Cell and Systems Biology, College of Medical, Veterinary and Life Sciences, University of Glasgow, Bower Building, Glasgow, G12 8QQ, UK.
New Phytol. 2015 May;206(3):1038-1050. doi: 10.1111/nph.13299. Epub 2015 Feb 3.
The phototropin 1 (phot1) blue light receptor mediates a number of adaptive responses, including phototropism, that generally serve to optimize photosynthetic capacity. Phot1 is a plasma membrane-associated protein, but upon irradiation, a fraction is internalized into the cytoplasm. Although this phenomenon has been reported for more than a decade, its biological significance remains elusive. Here, we use a genetic approach to revisit the prevalent hypotheses regarding the functional importance of receptor internalization. Transgenic plants expressing lipidated versions of phot1 that are permanently anchored to the plasma membrane were used to analyse the effect of internalization on receptor turnover, phototropism and other phot1-mediated responses. Myristoylation and farnesylation effectively prevented phot1 internalization. Both modified photoreceptors were found to be fully functional in Arabidopsis, rescuing phototropism and all other phot1-mediated responses tested. Light-mediated phot1 turnover occurred as in the native receptor. Furthermore, our work does not provide any evidence of a role of phot1 internalization in the attenuation of receptor signalling during phototropism. Our results demonstrate that phot1 signalling is initiated at the plasma membrane. They furthermore indicate that release of phot1 into the cytosol is not linked to receptor turnover or desensitization.
光受体 1(phot1)介导了许多适应性反应,包括向光性,这些反应通常有助于优化光合作用能力。Phot1 是一种质膜相关蛋白,但在照射后,一部分被内化到细胞质中。尽管这种现象已经报道了十多年,但它的生物学意义仍然难以捉摸。在这里,我们使用遗传方法重新审视关于受体内化功能重要性的流行假说。表达被脂质化并永久锚定在质膜上的 phot1 的转基因植物被用于分析内化对受体周转率、向光性和其他 phot1 介导的反应的影响。豆蔻酰化和法尼基化有效地阻止了 phot1 的内化。这两种修饰后的光受体在拟南芥中均具有完全功能,挽救了向光性和所有其他测试的 phot1 介导的反应。光介导的 phot1 周转率与天然受体相同。此外,我们的工作没有提供任何证据表明 phot1 内化在向光性期间受体信号转导的衰减中起作用。我们的结果表明,phot1 信号在质膜上起始。它们还表明,phot1 释放到细胞质中与受体周转率或脱敏无关。