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Forward Genetic Approaches in Chlamydia trachomatis
Published on: October 23, 2013
Indoleamine 2,3-Dioxygenase Activity in Chlamydia muridarum and Chlamydia pneumoniae Infected Mouse Lung Tissues
Dezső P Virok1, Tímea Raffai1, Dávid Kókai1
1Department of Medical Microbiology and Immunobiology, Faculty of Medicine, University of Szeged, Szeged, Hungary.
Abstract:
Chlamydia trachomatis infections are the most prevalent sexually transmitted infections with potentially debilitating sequelae, such as infertility. Mouse models are generally used for vaccine development, to study the immune response and histopathology associated with Chlamydia infection. An important question regarding murine models is the in vivo identification of murine host genes responsible for the elimination of the murine and human Chlamydia strains. RNA sequencing of the Chlamydia muridarum infected BALB/c lung transcriptome revealed that several genes with direct antichlamydial functions were induced at the tissue level, including the already described and novel members of the murine interferon-inducible GTPase family, the CXCL chemokines CXCL9, CXCL11, immunoresponsive gene 1, nitric oxide synthase-2 (iNOS), and lipocalin-2. Indoleamine 2,3-dioxygenase 1-2 (IDO1-2) previously described potent antichlamydial host enzymes were also highly expressed in the infected murine lungs. This finding was novel, since IDO was considered as a unique human antichlamydial defense gene. Besides a lower level of epithelial cell positivity, immunohistochemistry showed that IDO1-2 proteins were expressed prominently in macrophages. Detection of the tryptophan degradation product kynurenine and the impact of IDO inhibition on Chlamydia muridarum growth proved that the IDO1-2 proteins were functionally active. IDO1-2 activity also increased in Chlamydia muridarum infected C57BL/6 lung tissues, indicating that this phenomenon is not mouse strain specific. Our study shows that the murine antichlamydial response includes a variety of highly up-regulated defense genes in vivo. Among these genes the antichlamydial effectors IDO1-2 were identified. The potential impact of murine IDO1-2 expression on Chlamydia propagation needs further investigation.
Insights
Researchers identified key host genes in mice that fight Chlamydia infections. Indoleamine 2,3-dioxygenase 1-2 (IDO1-2) was found to be a crucial, active antichlamydial defense mechanism in murine lungs.
Area of Science:
- Immunology
- Microbiology
- Genetics
Background:
- Chlamydia trachomatis is a prevalent sexually transmitted infection with severe health consequences, including infertility.
- Murine models are essential for studying Chlamydia pathogenesis and developing vaccines.
- Identifying host genes involved in eliminating Chlamydia in vivo is crucial for understanding host defense mechanisms.
Purpose of the Study:
- To identify murine host genes responsible for eliminating Chlamydia strains in vivo.
- To investigate the role and activity of indoleamine 2,3-dioxygenase 1-2 (IDO1-2) in the murine antichlamydial response.
Main Methods:
- RNA sequencing of Chlamydia muridarum-infected BALB/c mouse lung transcriptome.
- Immunohistochemistry to detect protein expression, specifically IDO1-2 in macrophages.
- Measurement of tryptophan degradation products and assessment of IDO inhibition on bacterial growth.
Main Results:
- Several antichlamydial genes, including interferon-inducible GTPases, CXCL9, CXCL11, iNOS, and lipocalin-2, were significantly induced.
- Indoleamine 2,3-dioxygenase 1-2 (IDO1-2), previously considered a human-specific gene, was highly expressed and functionally active in infected murine lungs.
- IDO1-2 expression and activity were observed in both BALB/c and C57BL/6 mouse strains, indicating a conserved response.
Conclusions:
- The murine antichlamydial response involves a diverse set of upregulated defense genes in vivo.
- IDO1-2 is identified as a significant antichlamydial effector in mice, challenging previous assumptions about its host specificity.
- Further research is needed to elucidate the precise impact of murine IDO1-2 on Chlamydia propagation.
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