TY - JOUR KW - Cells, Cultured KW - Chemokines KW - Cluster Analysis KW - Female KW - Gene Expression Profiling KW - Gene Expression Regulation KW - Host-Pathogen Interactions KW - Humans KW - leprosy KW - Lipid Metabolism KW - Male KW - Mitochondria KW - Mycobacterium bovis KW - Mycobacterium leprae KW - Oligonucleotide Array Sequence Analysis KW - Peripheral nerves KW - Schwann Cells KW - Transcriptome AU - Guerreiro LTA AU - Robottom-Ferreira AB AU - Ribeiro-Alves M AU - Toledo-Pinto TG AU - Rosa Brito T AU - Rosa P AU - Sandoval FG AU - Jardim MR AU - Antunes SG AU - Shannon E AU - Sarno E AU - Pessolani M AU - Williams DL AU - Moraes M AB -
Herein, we performed microarray experiments in Schwann cells infected with live M. leprae and identified novel differentially expressed genes (DEG) in M. leprae infected cells. Also, we selected candidate genes associated or implicated with leprosy in genetic studies and biological experiments. Forty-seven genes were selected for validation in two independent types of samples by multiplex qPCR. First, an in vitro model using THP-1 cells was infected with live Mycobacterium leprae and M. bovis bacillus Calmette-Guérin (BCG). In a second situation, mRNA obtained from nerve biopsies from patients with leprosy or other peripheral neuropathies was tested. We detected DEGs that discriminate M. bovis BCG from M. leprae infection. Specific signatures of susceptible responses after M. leprae infection when compared to BCG lead to repression of genes, including CCL2, CCL3, IL8 and SOD2. The same 47-gene set was screened in nerve biopsies, which corroborated the down-regulation of CCL2 and CCL3 in leprosy, but also evidenced the down-regulation of genes involved in mitochondrial metabolism, and the up-regulation of genes involved in lipid metabolism and ubiquitination. Finally, a gene expression signature from DEG was identified in patients confirmed of having leprosy. A classification tree was able to ascertain 80% of the cases as leprosy or non-leprous peripheral neuropathy based on the expression of only LDLR and CCL4. A general immune and mitochondrial hypo-responsive state occurs in response to M. leprae infection. Also, the most important genes and pathways have been highlighted providing new tools for early diagnosis and treatment of leprosy.
BT - PloS one C1 - http://www.ncbi.nlm.nih.gov/pubmed/23798993?dopt=Abstract CN - GUERREIRO 2013 DA - 2013 DO - 10.1371/journal.pone.0064748 IS - 6 J2 - PLoS ONE LA - eng N2 -Herein, we performed microarray experiments in Schwann cells infected with live M. leprae and identified novel differentially expressed genes (DEG) in M. leprae infected cells. Also, we selected candidate genes associated or implicated with leprosy in genetic studies and biological experiments. Forty-seven genes were selected for validation in two independent types of samples by multiplex qPCR. First, an in vitro model using THP-1 cells was infected with live Mycobacterium leprae and M. bovis bacillus Calmette-Guérin (BCG). In a second situation, mRNA obtained from nerve biopsies from patients with leprosy or other peripheral neuropathies was tested. We detected DEGs that discriminate M. bovis BCG from M. leprae infection. Specific signatures of susceptible responses after M. leprae infection when compared to BCG lead to repression of genes, including CCL2, CCL3, IL8 and SOD2. The same 47-gene set was screened in nerve biopsies, which corroborated the down-regulation of CCL2 and CCL3 in leprosy, but also evidenced the down-regulation of genes involved in mitochondrial metabolism, and the up-regulation of genes involved in lipid metabolism and ubiquitination. Finally, a gene expression signature from DEG was identified in patients confirmed of having leprosy. A classification tree was able to ascertain 80% of the cases as leprosy or non-leprous peripheral neuropathy based on the expression of only LDLR and CCL4. A general immune and mitochondrial hypo-responsive state occurs in response to M. leprae infection. Also, the most important genes and pathways have been highlighted providing new tools for early diagnosis and treatment of leprosy.
PY - 2013 EP - e64748 T2 - PloS one TI - Gene expression profiling specifies chemokine, mitochondrial and lipid metabolism signatures in leprosy. UR - http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3683049/pdf/pone.0064748.pdf VL - 8 SN - 1932-6203 ER -