Ramachandran Plot: Difference between revisions

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m The definitions of phi and psi angles were interchanged. This was corrected.
m Correct the definitions of the angles phi and psi. My previous correction was wrong, but also the version before that.
 
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<StructureSection load='' size='450' pspeed='8' side='right' scene='Ramachandran_Plots/Plot_1rnh/2' caption=''>
<StructureSection load='' size='450' pspeed='8' side='right' scene='Ramachandran_Plots/Plot_1rnh/2' caption=''>
[[Image:Ramachandran plot general 100K.jpg|thumb|left|240px|Ramachandran plot and contours from 100,000 high-quality general-case datapoints]]
[[Image:Ramachandran plot general 100K.jpg|thumb|left|240px|Ramachandran plot and contours from 100,000 high-quality general-case datapoints]]
The Ramachandran plot is a plot of the torsional angles - [[Psi_and_Phi_Angles|phi (&phi;)and psi (&psi;)]] - of the residues (amino acids) contained in a peptide. In sequence order, &phi; is the C(i),Ca(i),N(i),C(i+1) torsion angle and &psi; is the N(i-1),C(i),Ca(i),N(i) torsion angle. The plot was developed in 1963 by G. N. Ramachandran, et. al.<ref>Ramachandran GN, Ramakrishnan C, Sasisekharan V (July 1963). "Stereochemistry of polypeptide chain configurations". J. Mol. Biol. 7: 95–9. PMID 13990617</ref> by plotting the &phi; values on the x-axis and the &psi; values on the y-axis, as for the image at left<ref>doi:10.1002/prot.10286</ref>. Plotting the torsional angles in this way graphically shows which combination of angles are possible. The torsional angles of each residue in a peptide define the geometry of its attachment to its two adjacent residues by positioning its planar peptide bond relative to the two adjacent planar peptide bonds, thereby the torsional angles determine the conformation of the residues and the peptide. Many of the angle combinations, and therefore the conformations of residues, are not possible because of steric hindrance. By making a Ramachandran plot, protein structural scientists can determine which torsional angles are permitted and can obtain insight into the structure of peptides. The scene on the right is the Ramachandran plot of ribonuclease H.
The Ramachandran plot is a plot of the torsional angles - [[Psi_and_Phi_Angles|phi (&phi;)and psi (&psi;)]] - of the residues (amino acids) contained in a peptide. In sequence order, &phi; is the C(i-1),N(i),Ca(i),C(i) torsion angle and &psi; is the N(i),Ca(i),C(i),N(i+1) torsion angle. The plot was developed in 1963 by G. N. Ramachandran, et. al.<ref>Ramachandran GN, Ramakrishnan C, Sasisekharan V (July 1963). "Stereochemistry of polypeptide chain configurations". J. Mol. Biol. 7: 95–9. PMID 13990617</ref> by plotting the &phi; values on the x-axis and the &psi; values on the y-axis, as for the image at left<ref>doi:10.1002/prot.10286</ref>. Plotting the torsional angles in this way graphically shows which combination of angles are possible. The torsional angles of each residue in a peptide define the geometry of its attachment to its two adjacent residues by positioning its planar peptide bond relative to the two adjacent planar peptide bonds, thereby the torsional angles determine the conformation of the residues and the peptide. Many of the angle combinations, and therefore the conformations of residues, are not possible because of steric hindrance. By making a Ramachandran plot, protein structural scientists can determine which torsional angles are permitted and can obtain insight into the structure of peptides. The scene on the right is the Ramachandran plot of ribonuclease H.


==Secondary structure plot regions==   
==Secondary structure plot regions==   

Latest revision as of 09:21, 1 February 2023

This page, as it appeared on November 30, 2010, was featured in this article in the journal Biochemistry and Molecular Biology Education.


Drag the structure with the mouse to rotate

Other entries in Proteopedia

Interactive Ramachandran plots can be generated for any entry in Proteopedia with the use of a typed Jmol command[1]:

  1. For example, in a new browser window open the entry in Proteopedia for phi (φ)and psi (ψ)
  2. If the JSmol panel shows a "Displaying simplified model" message, click on the "load full" orange button below it. Once the model is reloaded,
  3. Right-click on an empty space of the JSmol panel showing the 3D structure on the page, or click on the JSmol logo (or frank) in the bottom right corner.
  4. When the menu comes up, select Console
  5. Click in the lower text panel of the console that comes up and type the command Ramachandran, followed by the return key.
  6. After some processing the Ramachandran plot will be visible and you can hover over and click on the points in the plot just as you can with atoms in a Jmol scene window. (To return to the model, an easy solution is to reload the page or open a new browser instance of that page, or enter into the console model 1.1.) With the console window open, the values will be listed as you click on the spheres.
  7. To limit the plot to displaying certain residues or portions of the structure, you can issue commands in the console, such as display helix or display gly. The latter command will limit the plotted display to just glycine residues. In order to return to showing all values on the plot, issue the command display all in the Jmol console.

This method to generate interactive Ramachandran plots will also work for other instances of the Jmol applet / JSmol object elsewhere on the web as long as the version of the J(S)mol is 11.4 or greater.


If you just need to report φ and ψ values for a few residues, use the Scene Authoring Tools to select the residues of interest and enter the command draw RAMACHANDRAN in the console.

Notes

See Also