Javascript must be enabled to continue!
Multi-epitope vaccine candidates based on mycobacterial membrane protein large (MmpL) proteins against Mycobacterium ulcerans
View through CrossRef
Buruli ulcer (BU) is a neglected tropical disease. It is caused by the bacterium
Mycobacterium ulcerans
and is characterized by skin lesions. Several studies were performed testing the Bacillus Calmette-Guérin (BCG) vaccine in human and animal models and
M. ulcerans-
specific vaccines in animal models. However, there are currently no clinically accepted vaccines to prevent
M. ulcerans
infection. The aim of this study was to identify T-cell and B-cell epitopes from the mycobacterial membrane protein large (MmpL) proteins of
M. ulcerans.
These epitopes were analysed for properties including antigenicity, immunogenicity, non-allergenicity, non-toxicity, population coverage and the potential to induce cytokines. The final 8 CD8
+
, 12 CD4
+
T-cell and 5 B-cell epitopes were antigenic, non-allergenic and non-toxic. The estimated global population coverage of the CD8
+
and CD4
+
epitopes was 97.71%. These epitopes were used to construct five multi-epitope vaccine constructs with different adjuvants and linker combinations. The constructs underwent further structural analyses and refinement. The constructs were then docked with Toll-like receptors. Three of the successfully docked complexes were structurally analysed. Two of the docked complexes successfully underwent molecular dynamics simulations (MDS) and post-MDS analysis. The complexes generated were found to be stable. However, experimental validation of the complexes is required.
Title: Multi-epitope vaccine candidates based on mycobacterial membrane protein large (MmpL) proteins against
Mycobacterium ulcerans
Description:
Buruli ulcer (BU) is a neglected tropical disease.
It is caused by the bacterium
Mycobacterium ulcerans
and is characterized by skin lesions.
Several studies were performed testing the Bacillus Calmette-Guérin (BCG) vaccine in human and animal models and
M.
ulcerans-
specific vaccines in animal models.
However, there are currently no clinically accepted vaccines to prevent
M.
ulcerans
infection.
The aim of this study was to identify T-cell and B-cell epitopes from the mycobacterial membrane protein large (MmpL) proteins of
M.
ulcerans.
These epitopes were analysed for properties including antigenicity, immunogenicity, non-allergenicity, non-toxicity, population coverage and the potential to induce cytokines.
The final 8 CD8
+
, 12 CD4
+
T-cell and 5 B-cell epitopes were antigenic, non-allergenic and non-toxic.
The estimated global population coverage of the CD8
+
and CD4
+
epitopes was 97.
71%.
These epitopes were used to construct five multi-epitope vaccine constructs with different adjuvants and linker combinations.
The constructs underwent further structural analyses and refinement.
The constructs were then docked with Toll-like receptors.
Three of the successfully docked complexes were structurally analysed.
Two of the docked complexes successfully underwent molecular dynamics simulations (MDS) and post-MDS analysis.
The complexes generated were found to be stable.
However, experimental validation of the complexes is required.
Related Results
Hosts and transmission of Mycobacterium ulcerans: a systematic review
Hosts and transmission of Mycobacterium ulcerans: a systematic review
The control of Buruli ulcer (BU), a debilitating neglected tropical disease, is hampered by the inadequate understanding of the mode of transmission of its causative agent, Mycobac...
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
The seventh in the series of ETP Symposia (see
Rapid Communications in Mass Spectrometry
2012,
26
, ...
Experimental pieces of evidence for
Mycobacterium ulcerans
dormancy
Experimental pieces of evidence for
Mycobacterium ulcerans
dormancy
ABSTRACT
Background
Whether
Mycobacterium ulcerans
, the etiologic...
Variable Number Tandem Repeat Profiling of Mycobacterium ulcerans Reveals New Genotypes in Buruli Ulcer Endemic Communities in Ghana and Côte d’Ivoire
Variable Number Tandem Repeat Profiling of Mycobacterium ulcerans Reveals New Genotypes in Buruli Ulcer Endemic Communities in Ghana and Côte d’Ivoire
Buruli ulcer (BU), a necrotic skin disease caused by Mycobacterium ulcerans, is mainly prevalent in West Africa, but cases have also been reported in other tropical parts of the wo...
Répertoire des mycobactéries non-tuberculeuses en milieu tropical.
Répertoire des mycobactéries non-tuberculeuses en milieu tropical.
Dans la famille des mycobacteriacea, les mycobactéries non-tuberculeuses (MNT) forment un ensemble distinct du complexe Mycobacterium tuberculosis et du complexe Mycobacterium lepr...
Procedure for Western blot v1
Procedure for Western blot v1
Goal: This document has the objective of standardizing the protocol for Western blot. This technique allows the detection of specific proteins separated on polyacrylamide gel and t...
Screening anti-infectious molecules against
Mycobacterium ulcerans
: a step towards decontaminating environmental specimens
Screening anti-infectious molecules against
Mycobacterium ulcerans
: a step towards decontaminating environmental specimens
Abstract
Mycobacterium ulcerans
, a non-tuberculous mycobacterium responsible for Buruli ulcer, is residing in poorly defined e...
Burden of the Beast
Burden of the Beast
Introduction
Throughout the COVID-19 pandemic, and its fluctuating waves of infections and the emergence of new variants, Indigenous populations in Australia and worldwide have re...

