Recoverin, a calcium-activated myristoyl switch

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==Myristoyl Switch and Calcium==
==Myristoyl Switch and Calcium==
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<scene name='Recoverin,_a_calcium-activated_myristoyl_switch/Recoverin_no_calcium/2'>Recoverin</scene> (Initial colors: '''<font color="#808080">Hydrophobic</font>, <font color="#e000e0">Polar</font>''') has a <scene name='Recoverin,_a_calcium-activated_myristoyl_switch/Recoverin_morph/5'>myristic acid</scene> (14-carbon saturated fatty acid, or a similar acyl moiety) covalently linked via an amide bond to its N-terminal glycine. In the absence of calcium, the <scene name='Recoverin,_a_calcium-activated_myristoyl_switch/Recoverin_no_calcium/1'>myristoyl group is buried</scene> in the N-terminal protein domain, surrounded on all sides by alpha helices that form a hydrophobic pocket. The binding of <scene name='Recoverin,_a_calcium-activated_myristoyl_switch/Recoverin_morph/6'>two calcium ions</scene> to each recoverin molecule induces a <scene name='Recoverin,_a_calcium-activated_myristoyl_switch/Recoverin_morph/1'>conformational change </scene> that extrudes the myristoyl and exposes some hydrophobic amino acids on the surface. This enables the molecule to bind to the lipid bilayers of the disc membranes. <scene name='24/241531/Recoverin_storymorph/1'>Another morph</scene> emphasizes that two parts of the molecule rotate relative to each other while localretaining their local fold.
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<scene name='Recoverin,_a_calcium-activated_myristoyl_switch/Recoverin_no_calcium/2'>Recoverin</scene> (Initial colors: '''<font color="#808080">Hydrophobic</font>, <font color="#e000e0">Polar</font>''') has a <scene name='Recoverin,_a_calcium-activated_myristoyl_switch/Recoverin_morph/5'>myristic acid</scene> (14-carbon saturated fatty acid, or a similar acyl moiety) covalently linked via an amide bond to its N-terminal glycine. In the absence of calcium, the <scene name='Recoverin,_a_calcium-activated_myristoyl_switch/Recoverin_no_calcium/1'>myristoyl group is buried</scene> in the N-terminal protein domain, surrounded on all sides by alpha helices that form a hydrophobic pocket. The binding of <scene name='Recoverin,_a_calcium-activated_myristoyl_switch/Recoverin_morph/6'>two calcium ions</scene> to each recoverin molecule induces a <scene name='Recoverin,_a_calcium-activated_myristoyl_switch/Recoverin_morph/1'>conformational change </scene> that extrudes the myristoyl and exposes some hydrophobic amino acids on the surface. This enables the molecule to bind to the lipid bilayers of the disc membranes. <scene name='24/241531/Recoverin_storymorph/1'>An alternate morph</scene> emphasizes that two parts of the molecule rotate relative to each other while localretaining their local fold.
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The two calcium ions each bind to an EF hand motif, one in the C-terminal domain, and one in the N-terminal domain. Recoverin actually contains four EF hand motifs, but two of them are unable to bind calcium due to variations in sequence.
The two calcium ions each bind to an EF hand motif, one in the C-terminal domain, and one in the N-terminal domain. Recoverin actually contains four EF hand motifs, but two of them are unable to bind calcium due to variations in sequence.

Revision as of 15:20, 10 August 2021

Recoverin: 1iku model 7 (calcium-free) morphed to 1jsa model 9 (calcium-bound) complex with myristic acid.

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3D structures of recoverin

Updated on 10-August-2021

2d8n – RCV – human
2het, 1omr, 1rec, 4m2q, 4mlw – bRCV – bovine
1jsa, 1iku - bRCV - NMR
1omv, 4m2o, 4m2p, 4yi8, 4yi9 – bRCV (mutant)
1la3 - bRCV (mutant) - NMR
2i94 – bRCV + rhodopsin kinase

Credits

This page was adapted from The Protein Morpher, a defunct, Chime-based website written in 1998 by Eric Martz.

References

  1. 1.0 1.1 Tanaka T, Ames JB, Harvey TS, Stryer L, Ikura M, Nature 376(6539):444-447, 1995. PMID:7630423
  2. Ames JB, Ishima R, Tanaka T, Gordon JI, Stryer L, Ikura M, Nature 389(6647):198-202, 1997. PMID:9296500

See Also:

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