光敏色素
拟南芥
光敏色素A
解耦(概率)
组氨酸激酶
生物
生物物理学
突变体
进化生物学
细胞生物学
遗传学
植物
基因
红灯
工程类
控制工程
作者
E.S. Burgie,Li H,Zachary T. K. Gannam,Katrice E. McLoughlin,Richard D. Vierstra,Li H
出处
期刊:Nature plants
[Springer Nature]
日期:2023-06-08
卷期号:9 (7): 1116-1129
被引量:3
标识
DOI:10.1038/s41477-023-01435-8
摘要
Plants employ a divergent cohort of phytochrome (Phy) photoreceptors to govern many aspects of morphogenesis through reversible photointerconversion between inactive Pr and active Pfr conformers. The two most influential are PhyA whose retention of Pfr enables sensation of dim light, while the relative instability of Pfr for PhyB makes it better suited for detecting full sun and temperature. To better understand these contrasts, we solved, by cryo-electron microscopy, the three-dimensional structure of full-length PhyA as Pr. Like PhyB, PhyA dimerizes through head-to-head assembly of its C-terminal histidine kinase-related domains (HKRDs), while the remainder assembles as a head-to-tail light-responsive platform. Whereas the platform and HKRDs associate asymmetrically in PhyB dimers, these lopsided connections are absent in PhyA. Analysis of truncation and site-directed mutants revealed that this decoupling and altered platform assembly have functional consequences for Pfr stability of PhyA and highlights how plant Phy structural diversification has extended light and temperature perception. The three-dimensional model of phytochrome A supports an unanticipated convolution that underpins a new signalling mechanism used by these plant photoreceptors and reveals how structural diversification among isoforms extends light and temperature perception.
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