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RNA-seq Analysis of Transcriptomes in Thrombin-treated and Control Human Pulmonary Microvascular Endothelial Cells
Published on: February 13, 2013
Time-course transcriptomics reveals the impact of Treponema pallidum on microvascular endothelial cell function and
Sean Waugh1, Mara C Goodyear1, Alloysius Gomez1
1Department of Biochemistry and Microbiology, University of Victoria, Victoria, BC, Canada.
Abstract:
Syphilis, caused by Treponema pallidum subsp. pallidum, is an urgent global public health threat. Syphilis vaccine development has been impeded by limited understanding of the molecular mechanisms that enable T. pallidum to establish and maintain infection. The vascular endothelium is critical for T. pallidum attachment, dissemination, and host immune response initiation; however, the molecular details of T. pallidum-endothelial interactions are incompletely understood. To enhance understanding, we performed time-course transcriptomic profiling on T. pallidum-exposed brain microvascular endothelial cells. These analyses showed T. pallidum exposure altered pathways related to extracellular matrix, growth factors, integrins, and Rho GTPases. The induced transcriptional response was consistent with endothelial to mesenchymal transition, a process involved in fetal development and vascular dysfunction. In cells exposed to T. pallidum, the primary transcription factor associated with this process (Snail) was increased at both the transcript and protein levels, and microscopy analyses demonstrate F-actin cellular contraction. This study provides a comprehensive understanding of the molecular responses of endothelial cells to T. pallidum and identified the host pathways that might cause syphilis disease symptoms, information that could aid in syphilis vaccine design.
Insights
Syphilis bacteria trigger endothelial cells to undergo a transformation, potentially explaining disease symptoms. Understanding these molecular interactions is key for developing a syphilis vaccine.
Area of Science:
- Microbiology
- Vascular Biology
- Infectious Diseases
Background:
- Syphilis, caused by Treponema pallidum, is a global health concern.
- Limited understanding of T. pallidum's interaction with host cells hinders vaccine development.
- The vascular endothelium plays a crucial role in T. pallidum infection.
Purpose of the Study:
- To investigate the molecular mechanisms of T. pallidum-endothelial cell interactions.
- To understand the host cell response to T. pallidum exposure.
- To identify host pathways involved in syphilis pathogenesis for vaccine design.
Main Methods:
- Time-course transcriptomic profiling of T. pallidum-exposed brain microvascular endothelial cells.
- Analysis of gene expression changes.
- Protein level analysis and microscopy to assess cellular changes.
Main Results:
- T. pallidum exposure altered pathways related to extracellular matrix, growth factors, integrins, and Rho GTPases.
- Transcriptional response indicated endothelial to mesenchymal transition (EndMT).
- Increased Snail transcription factor and F-actin contraction observed, consistent with EndMT.
Conclusions:
- T. pallidum induces EndMT in endothelial cells, a process linked to vascular dysfunction.
- Identified host pathways may contribute to syphilis disease symptoms.
- Findings provide crucial information for developing a syphilis vaccine.
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