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HTLV-1 induces an inflammatory CD4+CD8+ T cell population in HTLV-1–associated myelopathy
Allison K. Maher, Aris Aristodemou, Nicolas Giang, Yuetsu Tanaka, Charles R.M. Bangham, Graham P. Taylor, Margarita Dominguez-Villar
Allison K. Maher, Aris Aristodemou, Nicolas Giang, Yuetsu Tanaka, Charles R.M. Bangham, Graham P. Taylor, Margarita Dominguez-Villar
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Research Article Immunology

HTLV-1 induces an inflammatory CD4+CD8+ T cell population in HTLV-1–associated myelopathy

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Abstract

Human T cell leukemia virus type 1 (HTLV-1) is a retrovirus with preferential CD4+ T cell tropism that causes a range of conditions spanning from asymptomatic infection to adult T cell leukemia and HTLV-1–associated myelopathy (HAM), an inflammatory disease of the CNS. The mechanisms by which HTLV-1 induces HAM are poorly understood. By directly examining the ex vivo phenotype and function of T cells from asymptomatic carriers and patients with HAM, we show that patients with HAM have a higher frequency of CD4+CD8+ double-positive (DP) T cells, which are infected with HTLV-1 at higher rates than CD4+ T cells. Displaying both helper and cytotoxic phenotypes, these DP T cells are highly proinflammatory and contain high frequencies of HTLV-1–specific cells. Mechanistically, we demonstrate that DP T cells arise by direct HTLV-1 infection of CD4+ and CD8+ T cells. High levels of CD49d and CXCR3 expression suggest that DP T cells possess the ability to migrate to the CNS, and when cocultured with astrocytes, DP T cells induce proinflammatory astrocytes that express high levels of CXCL10, IFN-γ, and IL-6. These results demonstrate the potential of DP T cells to directly contribute to CNS pathology.

Authors

Allison K. Maher, Aris Aristodemou, Nicolas Giang, Yuetsu Tanaka, Charles R.M. Bangham, Graham P. Taylor, Margarita Dominguez-Villar

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Figure 4

Contribution of DP T cells to HTLV-1–specific immunity.

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Contribution of DP T cells to HTLV-1–specific immunity.
(A and B) Repres...
(A and B) Representative flow plots showing the expression of CD154 and Tax by CD4+ SP and DP T cells (A) and the expression of CD69 and CD137 by CD8+ SP T and DP T cells (B) from a high proviral load asymptomatic carrier after a 12-hour stimulation with HTLV-1. (C and D) Box-and-whisker plot showing the frequency of CD4+ SP and DP T cells expressing CD154 (C) and CD8+ SP and DP T cells coexpressing CD69 and CD137 (D) in asymptomatic carriers (n = 12 AC lPVL, n = 16 AC hPVL). (E and F) Box-and-whisker plot showing the frequency of CD4+ SP and DP T cells expressing CD154 (E) or CD8+ SP and DP T cells coexpressing CD69 and CD137 (F) in different patient groups (n = 10 UC, n = 12 AC lPVL, n = 16 AC hPVL, n = 13 HAM). (G and H) Box-and-whisker plot comparing the frequency of CD154+ CD4+ SP and DP T cells (G) or CD69+CD137+ CD8+ SP and DP T cells (H) among patient groups (n = 10 UC, n = 12 AC lPVL, n = 16 AC hPVL, n = 13 HAM). (I) Box-and-whisker plot of the expression of cytokines and granzyme B in CD4+ SP, CD8+ SP, and DP T cells from asymptomatic carriers after stimulation with heat-inactivated HTLV-1 for 20 hours (n = 17 AC lPVL, n = 16 AC hPVL). (J) Box-and-whisker plot showing Ki67 and CXCL10 expression in CD4+ SP, CD8+ SP, and DP T cells from asymptomatic carriers after stimulation with heat-inactivated HTLV-1 for 12 hours (n = 12 AC lPVL, n = 14 AC hPVL). Wilcoxon signed-rank paired test with Holm correction for multiple comparisons (C–F, I, and J); Wilcoxon signed-rank unpaired test for comparisons between UC and AC lPVL, AC lPVL and AC hPVL, and AC hPVL and HAM (G and H). *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001.

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