User:Abbey Wells/Sandbox 1
From Proteopedia
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[http://en.wikipedia.org/wiki/Stearoyl-CoA Stearoyl-CoA] is the substrate that binds to the enzyme, SCD1. The binding of the substrate is stabilized by specific residues on the exterior and interior of the protein. Stearoyl-CoA is a long-chain fatty acyl-CoA. The head group of the substrate is composed of an adenine, ribose, phosphate groups, and [http://en.wikipedia.org/wiki/Chemical_polarity#:~:text=In%20chemistry%2C%20polarity%20is%20a,electronegativity%20between%20the%20bonded%20atoms polar atoms] such as of nitrogen, oxygen, and sulfur. The fatty acid tail is a 17-carbon chain which reaches into the interior of the protein. The head of stearoyl-CoA is attached to the exterior of the protein by polar residues. The adenine, ribose, and phosphate are attached by the residues <scene name='87/877602/Hydrophillic_top/2'>R151, D152, K185</scene>. The rest of the exterior of the substrate is attached by the residues <scene name='87/877602/Hydrophillic_bottom_labeled/2'>R184, N144, N71</scene> . The fatty acid chain dives into the interior of the enzyme. The acyl chain is enclosed in a tunnel (24 ang) buried in the cytosolic domain. The geometry of the tunnel and formation of bound acyl chain are the structural basis for the stereospecificity of the desaturation reaction <ref name="Bai">PMID:26098370</ref>. | [http://en.wikipedia.org/wiki/Stearoyl-CoA Stearoyl-CoA] is the substrate that binds to the enzyme, SCD1. The binding of the substrate is stabilized by specific residues on the exterior and interior of the protein. Stearoyl-CoA is a long-chain fatty acyl-CoA. The head group of the substrate is composed of an adenine, ribose, phosphate groups, and [http://en.wikipedia.org/wiki/Chemical_polarity#:~:text=In%20chemistry%2C%20polarity%20is%20a,electronegativity%20between%20the%20bonded%20atoms polar atoms] such as of nitrogen, oxygen, and sulfur. The fatty acid tail is a 17-carbon chain which reaches into the interior of the protein. The head of stearoyl-CoA is attached to the exterior of the protein by polar residues. The adenine, ribose, and phosphate are attached by the residues <scene name='87/877602/Hydrophillic_top/2'>R151, D152, K185</scene>. The rest of the exterior of the substrate is attached by the residues <scene name='87/877602/Hydrophillic_bottom_labeled/2'>R184, N144, N71</scene> . The fatty acid chain dives into the interior of the enzyme. The acyl chain is enclosed in a tunnel (24 ang) buried in the cytosolic domain. The geometry of the tunnel and formation of bound acyl chain are the structural basis for the stereospecificity of the desaturation reaction <ref name="Bai">PMID:26098370</ref>. | ||
=== Kink of Chain === | === Kink of Chain === | ||
- | The chain is kinked at carbon 9-carbon 10 where the double bond is generated. The | + | The chain is kinked at carbon 9-carbon 10 where the double bond is generated. The Kink is induced through the interactions of four conserved residues. Three out of four of these residues are not bound to the chain, but are hydrogen bonded to each other: <scene name='87/877602/Kink_build/1'> T257, Q143, W149 </scene>. T257 is hydrogen bonded to Q143, and Q143 is hydrogen bonded to W149. These residues are directly below the kink and will be hydrolyzed when the substrate is ready to be released. The residue that is directly hydrogen bonded to the chain is <scene name='87/877602/Trp258/2'>Trp258</scene>. This residue is highly conserved and stabilizes the chain so it will be in the correct orientation in the active site. |
=== Active Site === | === Active Site === |
Revision as of 19:10, 13 April 2021
Stearoyl-CoA Desaturase 1 from Mus musculus
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References
- ↑ 1.0 1.1 Bai Y, McCoy JG, Levin EJ, Sobrado P, Rajashankar KR, Fox BG, Zhou M. X-ray structure of a mammalian stearoyl-CoA desaturase. Nature. 2015 Jun 22. doi: 10.1038/nature14549. PMID:26098370 doi:http://dx.doi.org/10.1038/nature14549
- ↑ Shen J, Wu G, Tsai AL, Zhou M. Structure and Mechanism of a Unique Diiron Center in Mammalian Stearoyl-CoA Desaturase. J Mol Biol. 2020 May 27. pii: S0022-2836(20)30367-3. doi:, 10.1016/j.jmb.2020.05.017. PMID:32470559 doi:http://dx.doi.org/10.1016/j.jmb.2020.05.017
Student Contributors
- Abbey Wells
- Josey McKinley
- Anthony Durand