The Effect of a Knot on the Thermal Stability of Protein MJ0366: Insights from Molecular Dynamics and Monte Carlo Simulations

Fuente: arXiv
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Main Authors: Begun, A. M., Korneev, A. A., Zorina, A. V.
Format: Preprint
Published: 2024
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author Begun, A. M.
Korneev, A. A.
Zorina, A. V.
author_facet Begun, A. M.
Korneev, A. A.
Zorina, A. V.
contents Protein MJ0366 is a hypothetical protein from Methanocaldococcus jannaschii that has a rare and complex knot in its structure. The knot is a right-handed trefoil knot that involves about half of the protein's residues. In this article, we investigate the thermal stability of protein MJ0366 using numerical simulations based on molecular dynamics and Monte Carlo methods. We compare the results with those of a similar unknotted protein and analyze the effects of the knot on the folding and unfolding processes. We show that the knot in protein MJ0366 increases its thermal stability by creating a topological barrier that prevents the protein from unfolding at high temperatures. We also discuss the possible biological implications of the knot for the function and evolution of protein MJ0366.
format Preprint
id arxiv_https___arxiv_org_abs_2411_04390
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The Effect of a Knot on the Thermal Stability of Protein MJ0366: Insights from Molecular Dynamics and Monte Carlo Simulations
Begun, A. M.
Korneev, A. A.
Zorina, A. V.
Biological Physics
Soft Condensed Matter
Chemical Physics
Protein MJ0366 is a hypothetical protein from Methanocaldococcus jannaschii that has a rare and complex knot in its structure. The knot is a right-handed trefoil knot that involves about half of the protein's residues. In this article, we investigate the thermal stability of protein MJ0366 using numerical simulations based on molecular dynamics and Monte Carlo methods. We compare the results with those of a similar unknotted protein and analyze the effects of the knot on the folding and unfolding processes. We show that the knot in protein MJ0366 increases its thermal stability by creating a topological barrier that prevents the protein from unfolding at high temperatures. We also discuss the possible biological implications of the knot for the function and evolution of protein MJ0366.
title The Effect of a Knot on the Thermal Stability of Protein MJ0366: Insights from Molecular Dynamics and Monte Carlo Simulations
topic Biological Physics
Soft Condensed Matter
Chemical Physics
url https://arxiv.org/abs/2411.04390