The interconnecting hairpin extension "arm" : An essential allosteric element of phytochrome activity
Kurttila, M., Rumfeldt, J., Takala, H., & Ihalainen, J. A. (2023). The interconnecting hairpin extension "arm" : An essential allosteric element of phytochrome activity. Structure, 31(9), 1100-1108, e1-e4. https://doi.org/10.1016/j.str.2023.06.007
Julkaistu sarjassa
StructurePäivämäärä
2023Tekijänoikeudet
© 2023 the Authors
In red-light sensing phytochromes, isomerization of the bilin chromophore triggers structural and dynamic changes across multiple domains, ultimately leading to control of the output module (OPM) activity. In between, a hairpin structure, "arm", extends from an interconnecting domain to the chromophore region. Here, by removing this protein segment in a bacteriophytochrome from Deinococcus radiodurans (DrBphP), we show that the arm is crucial for signal transduction. Crystallographic, spectroscopic, and biochemical data indicate that this variant maintains the properties of DrBphP in the resting state. Spectroscopic data also reveal that the armless systems maintain the ability to respond to light. However, there is no subsequent regulation of OPM activity without the arms. Thermal denaturation reveals that the arms stabilize the DrBphP structure. Our results underline the importance of the structurally flexible interconnecting hairpin extensions and describe their central role in the allosteric coupling of phytochromes.
...
Julkaisija
ElsevierISSN Hae Julkaisufoorumista
0969-2126Asiasanat
Julkaisu tutkimustietojärjestelmässä
https://converis.jyu.fi/converis/portal/detail/Publication/183767353
Metadata
Näytä kaikki kuvailutiedotKokoelmat
Rahoittaja(t)
Suomen AkatemiaRahoitusohjelmat(t)
Akatemiatutkija, SA; Akatemiahanke, SALisätietoja rahoituksesta
The research was supported by the Academy of Finland (grants 332742 for J.A.I. and 330678 for H.T.).Lisenssi
Samankaltainen aineisto
Näytetään aineistoja, joilla on samankaltainen nimeke tai asiasanat.
-
Cryo-EM structures of a bathy phytochrome histidine kinase reveal a unique light-dependent activation mechanism
Bódizs, Szabolcs; Mészáros, Petra; Grunewald, Lukas; Takala, Heikki; Westenhoff, Sebastian (Elsevier, 2024)Phytochromes are photoreceptor proteins in plants, fungi, and bacteria. They can adopt two photochromic states with differential biochemical responses. The structural changes transducing the signal from the chromophore to ... -
Structural mechanism of signal transduction in a phytochrome histidine kinase
Wahlgren, Weixiao Yuan; Claesson, Elin; Tuure, Iida; Trillo-Muyo, Sergio; Bódizs, Szabolcs; Ihalainen, Janne A.; Takala, Heikki; Westenhoff, Sebastian (Nature Publishing Group, 2022)Phytochrome proteins detect red/far-red light to guide the growth, motion, development and reproduction in plants, fungi, and bacteria. Bacterial phytochromes commonly function as an entrance signal in two-component sensory ... -
Leveraging the histidine kinase-phosphatase duality to sculpt two-component signaling
Meier, Stefanie S. M.; Multamäki, Elina; Ranzani, Américo T.; Takala, Heikki; Möglich, Andreas (Nature Publishing Group, 2024)Bacteria must constantly probe their environment for rapid adaptation, a crucial need most frequently served by two-component systems (TCS). As one component, sensor histidine kinases (SHK) control the phosphorylation of ... -
The primary structural photoresponse of phytochrome proteins captured by a femtosecond X-ray laser
Claesson, Elin; Wahlgren, Weixiao Yuan; Takala, Heikki; Pandey, Suraj; Castillon, Leticia; Kuznetsova, Valentyna; Henry, Léocadie; Panman, Matthijs; Carrillo, Melissa; Kübel, Joachim; Nanekar, Rahul; Isaksson, Linnéa; Nimmrich, Amke; Cellini, Andrea; Morozov, Dmitry; Maj, Michał; Kurttila, Moona; Bosman, Robert; Nango, Eriko; Tanaka, Rie; Tanaka, Tomoyuki; Fangjia, Luo; Iwata, So; Owada, Shigeki; Moffat, Keith; Groenhof, Gerrit; Stojkovic, Emina A.; Ihalainen, Janne A.; Schmidt, Marius; Westenhof, Sebastian (eLife Sciences Publications, 2020)Phytochrome proteins control the growth, reproduction, and photosynthesis of plants, fungi, and bacteria. Light is detected by a bilin cofactor, but it remains elusive how this leads to activation of the protein through ... -
Signal amplification and transduction in phytochrome photosensors
Takala, Heikki; Björling, Alexander; Berntsson, Oskar; Lehtivuori, Heli; Niebling, Stephan; Hoernke, Maria; Kosheleva, Irina; Henning, Robert; Menzel, Andreas; Ihalainen, Janne; Westenhoff, Sebastian (Nature Publishing Group, 2014)[Introduction] Page 2 of 20 Sensory proteins must relay structural signals from the sensory site over large distances to regulatory output domains. Phytochromes are a major family of red-light sensing kinases ...
Ellei toisin mainittu, julkisesti saatavilla olevia JYX-metatietoja (poislukien tiivistelmät) saa vapaasti uudelleenkäyttää CC0-lisenssillä.