Both Subunits of the Dimeric Plant Photoreceptor Phytochrome Require Chromophore for Stability of the Far-red Light-absorbing Form
Overview
Affiliations
The dimeric plant photoreceptor phytochrome is converted from its inactive red light-absorbing form (Pr) into the active far-red light-absorbing form (Pfr) upon light absorption. Dynamics of Pfr generation and of thermal Pfr-to-Pr conversion are of fundamental importance for inducing adequate responses to light signals. Here, we analyzed the role of subunit interactions on spectroscopic properties of dimeric phytochrome A. Using a coexpression system and affinity chromatography, we prepared mixed phytochrome dimers that can incorporate the essential chromophore only in one subunit. We demonstrate that such mixed dimers have unaltered difference spectra. In contrast, dark reversion differed greatly between Pfr-Pfr homodimers and Pfr-Pr heterodimers, the former being about 100-fold more stable. Temperature dependence of reaction rates revealed an additional stabilization of about 4 kcal/mol in homodimers. Consequences of these findings are discussed in relation to the biological function of, and functional diversification between, phytochrome family members.
Burgie E, Gannam Z, McLoughlin K, Sherman C, Holehouse A, Stankey R Proc Natl Acad Sci U S A. 2021; 118(22).
PMID: 34039713 PMC: 8179155. DOI: 10.1073/pnas.2105649118.
Red light-induced structure changes in phytochrome A from Pisum sativum.
Oide M, Nakasako M Sci Rep. 2021; 11(1):2827.
PMID: 33531580 PMC: 7854702. DOI: 10.1038/s41598-021-82544-2.
Gourinchas G, Vide U, Winkler A J Biol Chem. 2019; 294(12):4498-4510.
PMID: 30683693 PMC: 6433076. DOI: 10.1074/jbc.RA118.007260.
Mechanisms Underlying the Environmentally Induced Plasticity of Leaf Morphology.
Fritz M, Rosa S, Sicard A Front Genet. 2018; 9:478.
PMID: 30405690 PMC: 6207588. DOI: 10.3389/fgene.2018.00478.
Asymmetric activation mechanism of a homodimeric red light-regulated photoreceptor.
Gourinchas G, Heintz U, Winkler A Elife. 2018; 7.
PMID: 29869984 PMC: 6005682. DOI: 10.7554/eLife.34815.