STUDI SIFAT MEKANIK PROTEIN L DENGAN PENDEKATAN SIMULASI STEERED MOLECULAR DYNAMICS

Protein L is an immunoglobulin protein, which has been known to have a rigid substructure, when it was stretched by atomic force microscope (AFM) in the previous study. The AFM experiment, however, was not able to provide information about the precise location of the rigid substructure in protein...

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Main Author: Aditama, Reza
Format: Final Project
Language:Indonesia
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Online Access:https://digilib.itb.ac.id/gdl/view/72242
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:72242
spelling id-itb.:722422023-03-09T09:00:55ZSTUDI SIFAT MEKANIK PROTEIN L DENGAN PENDEKATAN SIMULASI STEERED MOLECULAR DYNAMICS Aditama, Reza Kimia Indonesia Final Project protein L, steered molecular dynamics, protein substructure, mechanical property INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/72242 Protein L is an immunoglobulin protein, which has been known to have a rigid substructure, when it was stretched by atomic force microscope (AFM) in the previous study. The AFM experiment, however, was not able to provide information about the precise location of the rigid substructure in protein L and also the factors responsible for its mechanical property due to the limitation in the capability of the instrument. This problem was handled in the current study by simulating the stretching experiment with steered molecular dynamics (SMD) method. In this work, protein L was stretched by fixing one of the terminal atom and pulling from the other one with a constant velocity (0.5 Å/ps and 0.1 Å/ps) and with a constant force (600 and 750 pN). Similar to the experimental result, our simulation was also able to detect the presence of the rigid substructure. Further analysis to the simulation trajectory revealed that the rigid substructure of the protein L was the parallel b-sheet located in the C-terminal region, whose structure was mainly stabilized by the cluster of hydrogen bonds. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
topic Kimia
spellingShingle Kimia
Aditama, Reza
STUDI SIFAT MEKANIK PROTEIN L DENGAN PENDEKATAN SIMULASI STEERED MOLECULAR DYNAMICS
description Protein L is an immunoglobulin protein, which has been known to have a rigid substructure, when it was stretched by atomic force microscope (AFM) in the previous study. The AFM experiment, however, was not able to provide information about the precise location of the rigid substructure in protein L and also the factors responsible for its mechanical property due to the limitation in the capability of the instrument. This problem was handled in the current study by simulating the stretching experiment with steered molecular dynamics (SMD) method. In this work, protein L was stretched by fixing one of the terminal atom and pulling from the other one with a constant velocity (0.5 Å/ps and 0.1 Å/ps) and with a constant force (600 and 750 pN). Similar to the experimental result, our simulation was also able to detect the presence of the rigid substructure. Further analysis to the simulation trajectory revealed that the rigid substructure of the protein L was the parallel b-sheet located in the C-terminal region, whose structure was mainly stabilized by the cluster of hydrogen bonds.
format Final Project
author Aditama, Reza
author_facet Aditama, Reza
author_sort Aditama, Reza
title STUDI SIFAT MEKANIK PROTEIN L DENGAN PENDEKATAN SIMULASI STEERED MOLECULAR DYNAMICS
title_short STUDI SIFAT MEKANIK PROTEIN L DENGAN PENDEKATAN SIMULASI STEERED MOLECULAR DYNAMICS
title_full STUDI SIFAT MEKANIK PROTEIN L DENGAN PENDEKATAN SIMULASI STEERED MOLECULAR DYNAMICS
title_fullStr STUDI SIFAT MEKANIK PROTEIN L DENGAN PENDEKATAN SIMULASI STEERED MOLECULAR DYNAMICS
title_full_unstemmed STUDI SIFAT MEKANIK PROTEIN L DENGAN PENDEKATAN SIMULASI STEERED MOLECULAR DYNAMICS
title_sort studi sifat mekanik protein l dengan pendekatan simulasi steered molecular dynamics
url https://digilib.itb.ac.id/gdl/view/72242
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