Harper Shannon M, Christie John M, Gardner Kevin H
Department of Biochemistry, University of Texas Southwestern Medical Center, Dallas, Texas 75390-9038, USA.
Biochemistry. 2004 Dec 28;43(51):16184-92. doi: 10.1021/bi048092i.
Light plays a crucial role in activating phototropins, a class of plant photoreceptors that are sensitive to blue and UV-A wavelengths. Previous studies indicated that phototropin uses a bound flavin mononucleotide (FMN) within its light-oxygen-voltage (LOV) domain to generate a protein-flavin covalent bond under illumination. In the C-terminal LOV2 domain of Avena sativa phototropin 1, formation of this bond triggers a conformational change that results in unfolding of a helix external to this domain called Jalpha [Harper, S. M., et al. (2003) Science 301, 1541-1545]. Though the structural effects of illumination were characterized, it was unknown how these changes are coupled to kinase activation. To examine this, we made a series of point mutations along the Jalpha helix to disrupt its interaction with the LOV domain in a manner analogous to light activation. Using NMR spectroscopy and limited proteolysis, we demonstrate that several of these mutations displace the Jalpha helix from the LOV domain independently of illumination. When placed into the full-length phototropin protein, these point mutations display constitutive kinase activation, without illumination of the sample. These results indicate that unfolding of the Jalpha helix is the critical event in regulation of kinase signaling for the phototropin proteins.
光在激活向光素中起着至关重要的作用,向光素是一类对蓝光和UV-A波长敏感的植物光感受器。先前的研究表明,向光素在其光-氧-电压(LOV)结构域内利用结合的黄素单核苷酸(FMN)在光照下生成蛋白质-黄素共价键。在燕麦向光素1的C端LOV2结构域中,这种键的形成引发构象变化,导致该结构域外部的一个名为Jα的螺旋展开[哈珀,S.M.等人(2003年)《科学》301,1541 - 1545]。尽管光照的结构效应已得到表征,但尚不清楚这些变化是如何与激酶激活相偶联的。为了研究这一点,我们沿着Jα螺旋进行了一系列点突变,以类似于光激活的方式破坏其与LOV结构域的相互作用。使用核磁共振光谱和有限蛋白酶解,我们证明这些突变中有几个在不依赖光照的情况下将Jα螺旋从LOV结构域中置换出来。当将这些点突变引入全长向光素蛋白时,在不光照样品的情况下,它们表现出组成型激酶激活。这些结果表明,Jα螺旋的展开是向光素蛋白激酶信号调节中的关键事件。