Difference between revisions of "AutoDock4/C2/Running-AutoGrid/English"
Snehalathak (Talk | contribs) (Created page with "'''Title of script''': Running AutoGrid '''Author: Dr.Snehalatha Kaliappan and Sruthi Sudhakar''' '''Keywords: Autodock4, ADT, ligand, autogrid, macromolecule, pdbqt,''' vid...") |
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− | I will select | + | I will select 2vta-receptor-prep.psf file which I had saved in my home directory. |
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− | To create the grid, click''' Grid tab '''on the''' '''menu bar. | + | To create the grid, click on ''' Grid tab '''on the''' '''menu bar. |
Select '''Macromolecule''' and click on '''Choose''' option. | Select '''Macromolecule''' and click on '''Choose''' option. | ||
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Click on '''Select Molecule '''button at the bottom of the pop-up box. | Click on '''Select Molecule '''button at the bottom of the pop-up box. | ||
− | || In the '''Choose Macromolecule''' dialog-box click on '''2vta | + | || In the '''Choose Macromolecule''' dialog-box click on '''2vta'''. |
Click on the '''Select Molecule '''button at the bottom of the dialog-box. | Click on the '''Select Molecule '''button at the bottom of the dialog-box. | ||
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− | <nowiki>* the number of non-polar hydrogen atoms found, | + | <nowiki>* the number of non-polar hydrogen atoms found, </nowiki> |
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|- | |- | ||
|| Cursor on the ADT panel. | || Cursor on the ADT panel. | ||
− | || You can now see that ligand added to the receptor. | + | || You can now see that ligand is added to the receptor. |
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|- | |- | ||
|| Cursor on the ADT interface. | || Cursor on the ADT interface. | ||
− | || Next we must prepare the '''grid box '''for this '''receptor-ligand''' complex. | + | || Next we must prepare the '''grid box ''' for this '''receptor-ligand''' complex. |
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'''Grid Options''' window opens. | '''Grid Options''' window opens. | ||
− | || Back to the ADT interface. | + | || Back to the '''ADT''' interface. |
− | To set the grid box, click on '''Grid '''then select '''Grid Box'''. | + | To set the grid box, click on '''Grid '''and then select '''Grid Box'''. |
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− | + | We need to set the center of the grid as well as the x,y,z dimensions of the grid. | |
|- | |- | ||
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|| Sometimes we may not know the active site information. | || Sometimes we may not know the active site information. | ||
− | In such a case a blind docking covering the entire receptor can | + | In such a case a blind docking covering the entire receptor can be performed. |
|- | |- | ||
|| Rotate the slider towards the right in x, y and z directions to reach 126 points. | || Rotate the slider towards the right in x, y and z directions to reach 126 points. | ||
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'''site-specific docking, ''' | '''site-specific docking, ''' | ||
− | || To center the grid box over the active site, change the numbers in the '''Center Gird Box | + | || To center the grid box over the active site, change the numbers in the '''Center Gird Box'''. |
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choose '''Close saving current.''' | choose '''Close saving current.''' | ||
− | || To save the grid box properties, click '''File''' in the top-left of the '''Grid Options''' window. | + | || To save the grid box properties, click on '''File''' in the top-left of the '''Grid Options''' window. |
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The grid parameters you just set need to be saved as a .gpf file. | The grid parameters you just set need to be saved as a .gpf file. | ||
|- | |- | ||
− | || Click '''Grid '''on the main on the ADT interface | + | || Click '''Grid '''on the main on the ADT interface. |
+ | |||
+ | From the options choose '''Output'''. Select '''Save GPF.''' | ||
'''Grid Parameter Output File''' window opens. | '''Grid Parameter Output File''' window opens. | ||
− | || Click '''Grid '''on the menu bar on the ADT interface. | + | || Click '''Grid '''on the menu bar on the ADT interface. |
+ | |||
+ | From the options choose '''Output'''. | ||
+ | |||
+ | Select '''Save GPF'''. | ||
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Save the file as '''2vta.gpf.''' | Save the file as '''2vta.gpf.''' | ||
− | || Type the file name as '''2vta.gpf | + | || Type the file name as '''2vta.gpf'''. |
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− | Click on '''Save '''button at the bottom-right in the '''Grid Parameter Output File''' window. | + | Click on '''Save ''' button at the bottom-right in the '''Grid Parameter Output File''' window. |
− | The file will be saved in your home directory as 2vta.gpf. | + | The file will be saved in your home directory as '''2vta.gpf'''. |
|- | |- | ||
− | || click on '''Run''' on the | + | || click on '''Run''' on the menu bar. |
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Cursor on '''Run AutoGrid''' window. | Cursor on '''Run AutoGrid''' window. | ||
− | || To run AutoGrid, click on '''Run''' on the menu bar . | + | || To run AutoGrid, click on '''Run''' on the menu bar. |
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|- | |- | ||
|| Cursor on '''Run AutoGrid''' window. | || Cursor on '''Run AutoGrid''' window. | ||
− | || Windows users may click on the '''Browse''' button next to '''Program Pathname | + | || '''Windows''' users may click on the '''Browse''' button next to '''Program Pathname'''. |
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− | I am using '''Linux ''' | + | I am using '''Linux '''. |
+ | |||
+ | Hence I will leave it as such as my '''Program Pathname '''is already auto-populated. | ||
|- | |- | ||
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click on the '''Open''' button. | click on the '''Open''' button. | ||
− | || Next is '''Parameter Filename | + | || Next is '''Parameter Filename'''. |
− | I will click on the '''Browse '''button next to the '''Parameter Filename''' field. | + | I will click on the '''Browse ''' button next to the '''Parameter Filename''' field. |
− | + | '''autogrid4 Parameter File''' dialog box opens. | |
− | I will select | + | I will select '''2vta.gpf '''from my home folder and |
click on the '''Open''' button. | click on the '''Open''' button. | ||
|- | |- | ||
|| Cursor on the '''Log Filename''' field. | || Cursor on the '''Log Filename''' field. | ||
− | || '''Log Filename''' field will be automatically populated as 2vta.glg. | + | || '''Log Filename''' field will be automatically populated as '''2vta.glg'''. |
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− | I will open my home folder and check for a number of files with the extension '''.map | + | I will open my home folder and check for a number of files with the extension '''.map'''. |
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− | We also must locate the 2vta.glg file. | + | We also must locate the '''2vta.glg''' file. |
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Cursor on the line '''autogrid4: Successful Completion.''' | Cursor on the line '''autogrid4: Successful Completion.''' | ||
− | || To make sure autogrid is successfully completed, open the .glg file | + | Cursor on the '''.glg file'''. |
+ | |||
+ | || To make sure autogrid is successfully completed, open the '''.glg''' file using a text editor. | ||
− | Right click on the 2vta.glg file and choose, '''Open with Text Editor''' option. | + | Right click on the '''2vta.glg''' file and choose, '''Open with Text Editor''' option. |
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− | Here you can see the message, '''autogrid4: Successful Completion | + | Here you can see the message, '''autogrid4: Successful Completion'''. |
Close the '''glg''' file. | Close the '''glg''' file. | ||
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|- | |- | ||
− | || | + | || Only Narration |
|| This brings us to the end of this tutorial. | || This brings us to the end of this tutorial. | ||
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|| | || | ||
* Ran the AutoGrid program | * Ran the AutoGrid program | ||
− | * Checked the output .glg file for the successful running the AutoGrid program | + | * Checked the output .glg file for the successful running of the AutoGrid program |
|- | |- | ||
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− | Run the autogrid for the example, 1DWD given in the Examples folder in the Downloads page. | + | Run the autogrid for the example, '''1DWD''' given in the Examples folder in the Downloads page. |
Revision as of 17:01, 12 January 2024
Title of script: Running AutoGrid
Author: Dr.Snehalatha Kaliappan and Sruthi Sudhakar
Keywords: Autodock4, ADT, ligand, autogrid, macromolecule, pdbqt, video tutorial.
Visual Cue | Narration |
Slide Number 1
Title Slide |
Welcome to this spoken tutorial on Running AutoGrid. |
Slide Number 2
Learning Objectives |
In this tutorial, we will learn to,
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Slide Number 3
Learning Objectives |
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Slide Number 4
System Requirement |
Here I am using,
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Slide Number 5
Pre-requisites |
To follow this tutorial learner should be familiar with,
basic operations on AutoDock Tools interface |
Slide number 6
Code Files |
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Slide number 7
Code Files |
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Open the terminal using “Show Applications” button.
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Here, I have opened the AutoDock Tools interface. |
Cursor on the ADT interface. | I will open the session saved previously while preparing the receptor for docking.
Please watch the pre-requisite tutorial on preparing the receptor for docking. |
Click on File then Read Session,
from the Read Pmv Session pop-up box, select, 2vta-receptor-prep.psf file. Click on Open button. |
Click on File then choose Read Session.
Read Pmv Session dialog-box opens.
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Click on Grid tab on the menu bar.
Click on Macromolecule and Choose option. |
The model of the receptor molecule appears on the panel.
Select Macromolecule and click on Choose option. |
In the Choose Macromolecule pop-up box, click on 2vta.
Click on Select Molecule button at the bottom of the pop-up box. |
In the Choose Macromolecule dialog-box click on 2vta.
Click on the Select Molecule button at the bottom of the dialog-box. |
Cursor on the pop-up window. | A WARNING pop-up window appears describing the following;
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Click OK
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Click OK to close the pop-up.
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Cursor on the ADT panel. | Notice the change in the appearance of the receptor.
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Click Grid then on Set Map Types,
Open Ligand option.
Click on the Open button.
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Now let us add the ligand to the receptor.
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Cursor on the ADT panel. | You can now see that ligand is added to the receptor.
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Cursor on the ADT interface. | Next we must prepare the grid box for this receptor-ligand complex.
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Slide Number 8
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About the Grid Box.
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Slide Number 9
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However, we must first know the region of the receptor containing the ligand binding site.
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Slide Number 10
In case we do not know the exact coordinates for grid box, visualize the active site residues and set the grid boxes centering these residues. A blind docking covering the entire receptor can also be performed. |
If the active site information is unknown, it is recommended to search all available surfaces.
In such a case the grid box should cover the whole receptor-ligand complex. |
Click Grid > Grid Box.
Grid Options window opens. |
Back to the ADT interface.
To set the grid box, click on Grid and then select Grid Box.
This will open up a menu-interface with some default options. |
Cursor on the ADT interface. | On the panel you can now see the grid box covering a certain portion of the receptor.
|
Cursor on the ADT interface. | Sometimes we may not know the active site information.
In such a case a blind docking covering the entire receptor can be performed. |
Rotate the slider towards the right in x, y and z directions to reach 126 points.
|
In the Grid Options window, you can rotate the slider in x,y and z directions to cover the entire receptor-ligand complex.
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Cursor on the ADT interface. | In the present example, we already know the coordinates corresponding to the ligand binding site. |
Rotate the slider towards the right on x, y and z direction to reach 50,
(from 126 points to 50 points) |
Rotate the slider to change the number of points on x, y and z directions to 50.
Click the slider and drag the mouse from right to left to decrease the number. |
Cursor on the ADT interface. | Observe the grid box, it is now smaller in size.
|
Change the numbers in the Center Grid Box.
Change the Coordinates of the center of the binding site in the x, y and z direction to 27.86 , 0.69, 66.23. site-specific docking, |
To center the grid box over the active site, change the numbers in the Center Gird Box.
Type 27.86, 0.69, 66.23 in the x, y and z directions.
|
Cursor on the ADT interface. | Observe the panel, now the grid box is centered on the active site. |
Click File in the top-left of the Grid Options window,
choose Close saving current. |
To save the grid box properties, click on File in the top-left of the Grid Options window.
The Grid Options window closes. |
Cursor on the ADT panel. | AutoGrid requires an input grid parameter file, which usually has the extension .gpf.
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Click Grid on the main on the ADT interface.
From the options choose Output. Select Save GPF.
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Click Grid on the menu bar on the ADT interface.
From the options choose Output. Select Save GPF.
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Type the file name as 2vta.gpf.
Click on Save button at the bottom-right in the Grid Parameter Output File window. Save the file as 2vta.gpf. |
Type the file name as 2vta.gpf.
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click on Run on the menu bar.
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To run AutoGrid, click on Run on the menu bar.
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Cursor on Run AutoGrid window. | Windows users may click on the Browse button next to Program Pathname.
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Cursor on Run AutoGrid window. | Alternatively, you can copy and paste the autogrid4.exe file to your working directory.
Hence I will leave it as such as my Program Pathname is already auto-populated. |
In the Run AutoGrid window, Click on the Browse button next to the Parameter Filename field.
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Next is Parameter Filename.
click on the Open button. |
Cursor on the Log Filename field. | Log Filename field will be automatically populated as 2vta.glg.
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Click on the Launch button.
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Click on the Launch button.
This popup will automatically close when the process ends. |
Open home folder. Cursor on home folder.
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When the popup closes, AutoGrid has completed the generation of receptor maps.
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Cursor on .map files.
Scroll down the pages. Cursor on the line autogrid4: Successful Completion. Cursor on the .glg file. |
To make sure autogrid is successfully completed, open the .glg file using a text editor.
Close the glg file.
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Only Narration | This brings us to the end of this tutorial. |
Slide Number 9
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Let's summarize,
In this tutorial, we have,
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Slide Number 10
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Slide Number 10
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As an assignment
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Slide Number 11
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Slide Number 12
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Slide Number 13
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Slide Number 14
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Spoken Tutorial project was established by the Ministry of Education (MoE), Govt. of India |
Slide Number 15
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This tutorial is contributed by Snehalatha Kaliappan, Sruthi Sudhakar and Madhuri Ganapathi from IIT Bombay.
Thank you for joining. |