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Mutagenesis of DsbAss is Crucial for the Signal Recognition Particle Mechanism in Escherichia coli: Insights from Molecular Dynamics Simulations
被引:13
作者:
Durrani, Faiza Gul
[1
]
Gul, Roquyya
[2
]
Mirza, Muhammad Usman
[3
,4
]
Kaderbhai, Naheed Nazly
[5
]
Froeyen, Matheus
[3
]
Saleem, Mahjabeen
[6
]
机构:
[1] Univ Punjab, Sch Biol Sci, Quaid e Azam Campus,Opp Sheikh Zaid Hosp, Lahore 54590, Pakistan
[2] Gulab Devi Educ Complex, Fac Biol Sci, Ferozpur Rd, Lahore 54000, Pakistan
[3] Univ Leuven, Dept Pharmaceut & Pharmacol Sci, Rega Inst Med Res, Med Chem, B-3000 Leuven, Belgium
[4] Univ Lahore, Ctr Res Mol Med, Lahore 54000, Pakistan
[5] Aberystwyth Univ, Dept Inst Biol Environm & Rural Sci, Aberystwyth SY23 3FL, Dyfed, Wales
[6] Univ Punjab, Inst Biochem & Biotechnol, Quaid e Azam Campus,Opp Sheikh Zaid Hosp, Lahore 54590, Pakistan
来源:
关键词:
DsbA signal sequence;
ovine growth hormone;
signal recognition particle system;
molecular dynamics simulation;
molecular mechanics generalized born surface area;
SECRETED VIRULENCE FACTORS;
METHIONINE-RICH DOMAIN;
HUMAN GROWTH-HORMONE;
SEQUENCE RECOGNITION;
STRUCTURAL BASIS;
54-KD PROTEIN;
BINDING;
SRP;
RESISTANCE;
EXPRESSION;
D O I:
10.3390/biom9040133
中图分类号:
Q5 [生物化学];
Q7 [分子生物学];
学科分类号:
071010 ;
081704 ;
摘要:
The disulfide bond signal sequence (DsbAss) protein is characterized as an important virulence factor in gram-negative bacteria. This study aimed to analyze the alanine alteration in the hydrophobic (H) region of DsbAss and to understand the conformational DsbAss alteration(s) inside the fifty-four homolog (Ffh)-binding groove which were revealed to be crucial for translocation of ovine growth hormone (OGH) to the periplasmic space in Escherichia coli via the secretory (Sec) pathway. An experimental design was used to explore the hydrophobicity and alteration of alanine (Ala) to isoleucine (Ile) in the tripartite structure of DsbAss. As a result, two DsbAss mutants (Ala at positions -11 and -13) with same hydrophobicity of 1.539 led to the conflicting translocation of the active OGH gene. We performed molecular dynamics (MD) simulations and molecular mechanics generalized born surface area (MM-GBSA) binding free energy calculations to examine the interaction energetic and dynamic aspects of DsbAss/signal repetition particle 54 (SRP54) binding, which has a principle role in Escherichia coli Sec pathways. Although both DsbAss mutants retained helicity, the MD simulation analysis evidenced that altering Ala-13 changed the orientation of the signal peptide in the Ffh M binding domain groove, favored more stable interaction energies (MM-GBSA G(total) = -140.62 kcal mol(-1)), and hampered the process of OGH translocation, while Ala-11 pointed outward due to unstable conformation and less binding energy (G(total) = -124.24 kcal mol(-1)). Here we report the dynamic behavior of change of alanine in the H-domain of DsbAss which affects the process of translocation of OGH, where MD simulation and MM-GBSA can be useful initial tools to investigate the virulence of bacteria.
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页数:20
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