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Atomic Force Microscopy of Red-Light Photoreceptors Using PeakForce Quantitative Nanomechanical Property Mapping
Published on: October 24, 2014
Light-dependent dimerisation in the N-terminal sensory module of cyanobacterial phytochrome 1
Holger M Strauss1, Peter Schmieder, Jon Hughes
1Forschungsinstitut für Molekulare Pharmakologie, Robert-Rössle Strasse 10, D-13125 Berlin, Germany. strauss@fmp-berlin.de
Abstract:
Phytochromes, photoreceptors controlling important physiological processes in plants and many prokaryotes, are photochromic biliproteins. The red-absorbing Pr ground state is converted by light into the farred-absorbing Pfr which can be photoconverted back to Pr. In plants at least Pfr is the physiologically active signalling state. Here, we show that the N-terminal photochromic module of Cph1 homodimerises reversibly and independently in Pr and Pfr, Pfr-dimers being significantly more stable. Implications for the mechanism of signal transduction are discussed.
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