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1.
Proc Natl Acad Sci U S A ; 112(5): 1499-504, 2015 Feb 03.
Article in English | MEDLINE | ID: mdl-25605938

ABSTRACT

Mutations in the XPD subunit of the DNA repair/transcription factor TFIIH result in distinct clinical entities, including the cancer-prone xeroderma pigmentosum (XP) and the multisystem disorder trichothiodystrophy (TTD), which share only cutaneous photosensitivity. Gene-expression profiles of primary dermal fibroblasts revealed overexpression of matrix metalloproteinase 1 (MMP-1), the gene encoding the metalloproteinase that degrades the interstitial collagens of the extracellular matrix (ECM), in TTD patients mutated in XPD compared with their healthy parents. The defect is observed in TTD and not in XP and is specific for fibroblasts, which are the main producers of dermal ECM. MMP-1 transcriptional up-regulation in TTD is caused by an erroneous signaling mediated by retinoic acid receptors on the MMP-1 promoter and leads to hypersecretion of active MMP-1 enzyme and degradation of collagen type I in the ECM of cell/tissue systems and TTD patient skin. In agreement with the well-known role of ECM in eliciting signaling events controlling cell behavior and tissue homeostasis, ECM alterations in TTD were shown to impact on the migration and wound-healing properties of patient dermal fibroblasts. The presence of a specific inhibitor of MMP activity was sufficient to restore normal cell migration, thus providing a potential approach for therapeutic strategies. This study highlights the relevance of ECM anomalies in TTD pathogenesis and in the phenotypic differences between TTD and XP.


Subject(s)
Extracellular Matrix/pathology , Matrix Metalloproteinase 1/metabolism , Transcription Factor TFIIH/physiology , Trichothiodystrophy Syndromes/enzymology , Humans , Matrix Metalloproteinase 1/genetics , Promoter Regions, Genetic , Receptors, Retinoic Acid/metabolism , Trichothiodystrophy Syndromes/pathology , Wound Healing
2.
Cell Microbiol ; 15(4): 660-74, 2013 Apr.
Article in English | MEDLINE | ID: mdl-23121245

ABSTRACT

Mannose-capped lipoarabinomannan (ManLAM) is considered an important virulence factor of Mycobacterium tuberculosis. However, while mannose caps have been reported to be responsible for various immunosuppressive activities of ManLAM observed in vitro, there is conflicting evidence about their contribution to mycobacterial virulence in vivo. Therefore, we used Mycobacterium bovis BCG and M. tuberculosis mutants that lack the mannose cap of LAM to assess the role of ManLAM in the interaction of mycobacteria with the host cells, to evaluate vaccine-induced protection and to determine its importance in M. tuberculosis virulence. Deletion of the mannose cap did not affect BCG survival and replication in macrophages, although the capless mutant induced a somewhat higher production of TNF. In dendritic cells, the capless mutant was able to induce the upregulation of co-stimulatory molecules and the only difference we detected was the secretion of slightly higher amounts of IL-10 as compared to the wild type strain. In mice, capless BCG survived equally well and induced an immune response similar to the parental strain. Furthermore, the efficacy of vaccination against a M. tuberculosis challenge in low-dose aerosol infection models in mice and guinea pigs was not affected by the absence of the mannose caps in the BCG. Finally, the lack of the mannose cap in M. tuberculosis did not affect its virulence in mice nor its interaction with macrophages in vitro. Thus, these results do not support a major role for the mannose caps of LAM in determining mycobacterial virulence and immunogenicity in vivo in experimental animal models of infection, possibly because of redundancy of function.


Subject(s)
Host-Pathogen Interactions , Lipopolysaccharides/analysis , Mannose/analysis , Mycobacterium bovis/immunology , Mycobacterium tuberculosis/immunology , Tuberculosis, Pulmonary/immunology , Tuberculosis, Pulmonary/pathology , Animals , Dendritic Cells/immunology , Dendritic Cells/microbiology , Disease Models, Animal , Guinea Pigs , Macrophages/microbiology , Mice , Microbial Viability , Mycobacterium bovis/chemistry , Mycobacterium bovis/genetics , Mycobacterium bovis/growth & development , Mycobacterium tuberculosis/chemistry , Mycobacterium tuberculosis/genetics , Mycobacterium tuberculosis/growth & development , Tuberculosis, Pulmonary/microbiology , Virulence Factors/analysis
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