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  It takes two transducins to activate the cGMP-phosphodiesterase 6 in retinal rods

Qureshi, B. M., Behrmann, E., Schoeneberg, J., Loerke, J., Buerger, J., Mielke, T., et al. (2018). It takes two transducins to activate the cGMP-phosphodiesterase 6 in retinal rods. Open Biology, 8(8): 180075. doi:10.1098/rsob.180075.

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rsob.180075.pdf (Publisher version), 890KB
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 Creators:
Qureshi, Bilal M.1, Author
Behrmann, Elmar2, Author           
Schoeneberg, Johannes1, Author
Loerke, Justus1, Author
Buerger, Joerg1, Author
Mielke, Thorsten1, Author
Giesebrecht, Jan1, Author
Noe, Frank1, Author
Lamb, Trevor D.1, Author
Hofmann, Klaus Peter1, Author
Spahn, Christian M. T.1, Author
Heck, Martin1, Author
Affiliations:
1External Organizations, ou_persistent22              
2Max Planck Research Group Structural Dynamics of Proteins, Center of Advanced European Studies and Research (caesar), Max Planck Society, ou_2173687              

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Free keywords: PDE6; coincidence switch; density switch; noise filtering; visual signal transduction
 Abstract: Among cyclic nucleotide phosphodiesterases (PDEs), PDE6 is unique in serving as an effector enzyme in G protein-coupled signal transduction. In retinal rods and cones, PDE6 is membrane-bound and activated to hydrolyse its substrate, cGMP, by binding of two active G protein α-subunits (Gα*). To investigate the activation mechanism of mammalian rod PDE6, we have collected functional and structural data, and analysed them by reaction-diffusion simulations. Gα* titration of membrane-bound PDE6 reveals a strong functional asymmetry of the enzyme with respect to the affinity of Gα* for its two binding sites on membrane-bound PDE6 and the enzymatic activity of the intermediary 1 : 1 Gα* · PDE6 complex. Employing cGMP and its 8-bromo analogue as substrates, we find that Gα* · PDE6 forms with high affinity but has virtually no cGMP hydrolytic activity. To fully activate PDE6, it takes a second copy of Gα* which binds with lower affinity, forming Gα* · PDE6 · Gα*. Reaction-diffusion simulations show that the functional asymmetry of membrane-bound PDE6 constitutes a coincidence switch and explains the lack of G protein-related noise in visual signal transduction. The high local concentration of Gα* generated by a light-activated rhodopsin molecule efficiently activates PDE6, whereas the low density of spontaneously activated Gα* fails to activate the effector enzyme.

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 Dates: 2018-08-01
 Publication Status: Published online
 Pages: -
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 Table of Contents: -
 Rev. Type: -
 Identifiers: ISI: 000443334800004
DOI: 10.1098/rsob.180075
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Title: Open Biology
  Abbreviation : Open Biol
Source Genre: Journal
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Publ. Info: Royal Society
Pages: - Volume / Issue: 8 (8) Sequence Number: 180075 Start / End Page: - Identifier: Other: 2630944-0
Other: 2046-2441
CoNE: https://pure.mpg.de/cone/journals/resource/2046-2441