AngleBetweenHelices: Difference between revisions
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{{Infobox script-repo | |||
|type = Python Module | |||
|filename = anglebetweenhelices.py | |||
|author = [[User:Speleo3|Thomas Holder]] | |||
|license = BSD | |||
}} | |||
{{Infobox psico | |||
|module = psico.orientation | |||
}} | |||
<gallery perrow=1 heights=191px widths=250px style="float:right; clear: right"> | |||
Image:Helix_orientation1.png|Orientation of a helix | |||
Image:Helix_orientation2.png|Orientation of two helices, their angle that separates the two is 145.08 degrees as reported by the script | |||
</gallery> | |||
Calculate angle between alpha-helices or beta-sheets. | Calculate angle between alpha-helices or beta-sheets. | ||
There are four different methods implemented to fit a helix, two of them also work for sheets or loops. | There are four different methods implemented to fit a helix, two of them also work for sheets or loops. | ||
Line 4: | Line 20: | ||
= Commands = | = Commands = | ||
angle_between_helices selection1, selection2 [, method [, visualize ]] | |||
helix_orientation selection [, visualize [, sigma_cutoff ]] | |||
helix_orientation_hbond selection [, visualize [, cutoff ]] | |||
loop_orientation selection [, visualize ] | |||
cafit_orientation selection [, visualize ] | |||
= Example = | = Example = | ||
< | <syntaxhighlight lang="python"> | ||
fetch 2x19 | import anglebetweenhelices | ||
fetch 2x19, async=0 | |||
select hel1, /2x19//B/23-36/ | select hel1, /2x19//B/23-36/ | ||
select hel2, /2x19//B/40-54/ | select hel2, /2x19//B/40-54/ | ||
# just calculate/visualize orientation of single alpha-helix | # just calculate/visualize orientation of single alpha-helix | ||
helix_orientation_hbond hel1 | helix_orientation_hbond hel1 | ||
# get angle between two helices | # get angle between two helices | ||
angle_between_helices hel1, hel2 | angle_between_helices hel1, hel2 | ||
angle_between_helices hel1, hel2, method=1 | angle_between_helices hel1, hel2, method=1 | ||
angle_between_helices hel1, hel2, method=2 | angle_between_helices hel1, hel2, method=2 | ||
# get angle between beta-sheets | # get angle between beta-sheets | ||
select sheet1, A/47-54/ | select sheet1, A/47-54/ | ||
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angle_between_helices sheet1, sheet6, method=loop_orientation | angle_between_helices sheet1, sheet6, method=loop_orientation | ||
angle_between_helices sheet1, sheet6, method=cafit_orientation | angle_between_helices sheet1, sheet6, method=cafit_orientation | ||
</ | </syntaxhighlight> | ||
Output: | |||
<syntaxhighlight lang="python"> | |||
PyMOL>angle_between_helices hel1, hel2, method=cafit_orientation | |||
Using method: cafit_orientation | |||
Angle: 145.08 deg | |||
</syntaxhighlight> | |||
== See Also == | |||
* [[angle_between_domains]] | |||
[[Category:Structural_Biology_Scripts]] | [[Category:Structural_Biology_Scripts]] | ||
[[Category:Pymol-script-repo]] |
Latest revision as of 09:38, 15 December 2016
Type | Python Module |
---|---|
Download | anglebetweenhelices.py |
Author(s) | Thomas Holder |
License | BSD |
This code has been put under version control in the project Pymol-script-repo |
Included in psico | |
Module | psico.orientation |
---|
Calculate angle between alpha-helices or beta-sheets. There are four different methods implemented to fit a helix, two of them also work for sheets or loops.
Commands
angle_between_helices selection1, selection2 [, method [, visualize ]]
helix_orientation selection [, visualize [, sigma_cutoff ]]
helix_orientation_hbond selection [, visualize [, cutoff ]]
loop_orientation selection [, visualize ]
cafit_orientation selection [, visualize ]
Example
import anglebetweenhelices
fetch 2x19, async=0
select hel1, /2x19//B/23-36/
select hel2, /2x19//B/40-54/
# just calculate/visualize orientation of single alpha-helix
helix_orientation_hbond hel1
# get angle between two helices
angle_between_helices hel1, hel2
angle_between_helices hel1, hel2, method=1
angle_between_helices hel1, hel2, method=2
# get angle between beta-sheets
select sheet1, A/47-54/
select sheet6, A/146-149/
angle_between_helices sheet1, sheet6, method=loop_orientation
angle_between_helices sheet1, sheet6, method=cafit_orientation
Output:
PyMOL>angle_between_helices hel1, hel2, method=cafit_orientation
Using method: cafit_orientation
Angle: 145.08 deg