Transducin

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== Function ==
== Function ==
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'''Transducin''' (TDN) is a heterotrimeric G protein containing 3 chains: α, β and γ which are organized in two subunits: α and βγ. TDN is involved in phototransduction. The absorption of a photon by retinal causes a change in the conformation of rhodopsin into metarhodopsin II. The latter causes activation of TDN. Upon TDN activation the GDP bound to its α subunit is exchanged for the GTP from the cytoplasm. Deactivation of TDN occurs when the GTP bound to the α subunit is hydrolyzed to GDP. Phosducin binds to the βγ subunit of TND preventing its reassociation with the α subunit.
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'''Transducin''' (TDN) is a heterotrimeric G protein containing 3 chains: α, β and γ which are organized in two subunits: α and βγ<ref>PMID:2534964</ref>. TDN is involved in phototransduction. The absorption of a photon by retinal causes a change in the conformation of rhodopsin into metarhodopsin II. The latter causes activation of TDN. Upon TDN activation the GDP bound to its α subunit is exchanged for the GTP from the cytoplasm. Deactivation of TDN occurs when the GTP bound to the α subunit is hydrolyzed to GDP. Phosducin binds to the βγ subunit of TND preventing its reassociation with the α subunit.
== Disease ==
== Disease ==

Revision as of 10:41, 20 September 2016

Structure of rat transducin α (grey), β (green) and γ (gold) subunits complex with GDP (stick model) (PDB code 1gp2).

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3D structures of transducin

Updated on 20-September-2016

References

  1. Lerea CL, Bunt-Milam AH, Hurley JB. Alpha transducin is present in blue-, green-, and red-sensitive cone photoreceptors in the human retina. Neuron. 1989 Sep;3(3):367-76. PMID:2534964

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Michal Harel, Alexander Berchansky, Jaime Prilusky, Joel L. Sussman

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