Protein unfolding by SDS: the microscopic mechanisms and the properties of the SDS-protein assembly
Movie illustrating a 6 μs MD simulation of titin I27 in 0.40 M NaCl with 120 SDS at 373 K, replica 1. The I27 domain of titin (cartoon representation of the protein) in an aqueous 0.40 M NaCl solution (not shown) at 373 K with 120 SDS molecules (cyan and red spheres), only showing SDS when directly bound to the protein for clarity. Trajectory smoothing and alignment may have introduced some minor visual artifacts.
Movie illustrating a 6 μs MD simulation of titin I27 in 0.40 M NaCl with 120 SDS at 373 K, replica 2. The I27 domain of titin (cartoon representation of the protein) in an aqueous 0.40 M NaCl solution (not shown) at 373 K with 120 SDS molecules (cyan and red spheres), only showing SDS when directly bound to the protein for clarity. Trajectory smoothing and alignment may have introduced some minor visual artifacts.
Movie illustrating a 6 μs MD simulation of titin I27 in 0.40 M NaCl with 120 SDS at 373 K, replica 3. The I27 domain of titin (cartoon representation of the protein) in an aqueous 0.40 M NaCl solution (not shown) at 373 K with 120 SDS molecules (cyan and red spheres), only showing SDS when directly bound to the protein for clarity. Trajectory smoothing and alignment may have introduced some minor visual artifacts.
Movie illustrating a 6 μs MD simulation of titin I27 in 0.40 M NaCl with 180 SDS at 373 K. The I27 domain of titin (orange semi-transparent surface, plus cartoon representation of the protein) in an aqueous 0.40 M NaCl solution (not shown) at 373 K with 180 SDS molecules (cyan and red spheres), only showing SDS when directly bound to the protein for clarity. Trajectory smoothing and alignment may have introduced some minor visual artifacts.
Movie illustrating a 6 μs MD simulation of titin I27 in 0.40 M NaCl without SDS at 373 K. The I27 domain of titin (cartoon representation of the protein) in an aqueous 0.40 M NaCl solution (not shown) at 373 K without any SDS molecules present. Trajectory smoothing and alignment may have introduced some minor visual artifacts.
Movie illustrating a 6 μs MD simulation of titin I27 in 0.40 M NaCl with 120 SDS at 300 K, replica 1. The I27 domain of titin (yellow tube) in an aqueous 0.40 M NaCl solution (not shown) at 300 K with 120 SDS molecules (cyan and red spheres), only showing SDS when directly bound to the protein for clarity. Trajectory smoothing may have introduced some minor visual artifacts, no alignment was performed.
Movie illustrating a 6 μs MD simulation of titin I27 in 0.40 M NaCl with 120 SDS at 300 K, replica 2. The I27 domain of titin (yellow tube) in an aqueous 0.40 M NaCl solution (not shown) at 300 K with 120 SDS molecules (cyan and red spheres), only showing SDS when directly bound to the protein for clarity. Trajectory smoothing may have introduced some minor visual artifacts, no alignment was performed.
Movie illustrating a 15 μs MD simulation of β-amylase in 0.40 M NaCl with 500 SDS at 373 K. β-amylase (cartoon representation of the protein) in an aqueous 0.40 M NaCl solution (not shown) at 373 K with 500 SDS molecules (cyan and red spheres), only showing SDS when directly bound to the protein for clarity. Trajectory smoothing and alignment may have introduced some minor visual artifacts.