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Adaptation of Human CD4+T Cells to Pathophysiological Hypoxia: A Transcriptome Analysis

期刊

JOURNAL OF RHEUMATOLOGY
卷 36, 期 12, 页码 2655-2669

出版社

J RHEUMATOL PUBL CO
DOI: 10.3899/jrheum.090255

关键词

HYPOXIA; T LYMPHOCYTES; RHEUMATOID ARTHRITIS; TRANSCRIPTOME

资金

  1. German Federal Ministry of Education and Research [01GS0110, 01GS0160, 01GS0413]

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Objective. Inflamed tissues are usually characterized by low oxygen levels. We investigated whether pathophysiological hypoxia (pO(2) < 1%) as found in the rheumatoid synovium Modulates the transcriptome of human CD4+ T cells. Methods. We analyzed the extent to which hypoxia influences the transcriptome in the rheumatoid synovium according to a gene Cluster reflecting adaptation to low oxygen levels. Hypoxia-inducible factor-1 alpha (HIF-1 alpha) was detected in the rheumatoid synovium using immunohistochemistry. Isolated human CD4+ T cells were exposed to hypoxia and analyzed using microarray analysis, quantitative polymerase chain reaction, and immunoblot detection. Results. In rheumatoid arthritis (RA) synovial tissue samples, hypoxia modulates the transcription profile. This profile is similar, but not identical, to that found in isolated CD4+ T cells incubated under hypoxic conditions. We show that HIF-1 alpha is expressed in synovial tissue samples and in hypoxic CD4+ cells; and that hypoxia directly affects differential gene expression in human T cells with up to 4.8% modulation of the transcriptome. Functional genome analysis revealed substantial effects of hypoxia oil immune response, transcriptional regulation, protein modification, cell growth and proliferation, and cell metabolism. Conclusion. Severe hypoxia, a feature of joint inflammation, considerably modulates the transcriptome of cells found in the rheumatoid synovium. Human CD4+ T cells adapt to hypoxic conditions mainly by HIF-1-driven effects oil the transcriptome reflecting a profound influence on immune functions. Thus, hypoxia must be taken into account when therapeutically targeting inflammation. (First Release Nov 1 2009; J Rheumatol 2009:36:2655-69; doi:10.3899/jrheum.090255)

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