scholarly journals CD147-Cyclophilin a Interactions Promote Proliferation and Survival of Cutaneous T-Cell Lymphoma

2021 ◽  
Vol 22 (15) ◽  
pp. 7889
Author(s):  
Minami Sakamoto ◽  
Tomomitsu Miyagaki ◽  
Hiroaki Kamijo ◽  
Tomonori Oka ◽  
Hikari Boki ◽  
...  

CD147, a transmembrane glycoprotein that belongs to the immunoglobulin superfamily, and cyclophilin A (CypA), one of the binding partners of CD147, are overexpressed in tumor cells and associated with the progression of several malignancies, including both solid and hematological malignancies. However, CD147 and CypA involvement in cutaneous T-cell lymphoma (CTCL) has not been reported. In this study, we examined CD147 and CypA expression and function using clinical samples of mycosis fungoides (MF) and Sézary syndrome (SS) and CTCL cell lines. CD147 and CypA were overexpressed by tumor cells of MF/SS, and CypA was also expressed by epidermal keratinocytes in MF/SS lesional skin. Serum CypA levels were increased and correlated with disease severity markers in MF/SS patients. Anti-CD147 antibody and/or anti-CypA antibody suppressed the proliferation of CTCL cell lines, both in vitro and in vivo, via downregulation of phosphorylated extracellular-regulated kinase 1/2 and Akt. These results suggest that CD147-CypA interactions can contribute to the proliferation of MF/SS tumor cells in both a autocrine and paracrine manner, and that the disruption of CD147-CypA interactions could be a new therapeutic strategy for the treatment of MF/SS.

Blood ◽  
2006 ◽  
Vol 107 (6) ◽  
pp. 2354-2363 ◽  
Author(s):  
Aurore Sors ◽  
Francette Jean-Louis ◽  
Claire Pellet ◽  
Liliane Laroche ◽  
Louis Dubertret ◽  
...  

AbstractConstitutive activation of the nuclear factor-kappaB (NF-κB) pathway has been shown to be involved in the resistance of tumor cells to apoptosis in several human malignancies of the hematopoietic lineage. By using electrophoretic mobility shift assay (EMSA) and confocal microscopic analysis, we demonstrate that NF-κB is constitutively activated in cutaneous T-cell lymphoma (CTCL) cell lines HuT-78, MyLa, and SeAx and in peripheral blood lymphocytes (PBLs) from patients with Sézary syndrome (SS) presenting a high ratio of tumor cells, with evidence of p50 and RelA/p65 in DNA-linked complexes. Transfection of SeAx line with a κB/luciferase reporter plasmid showed that translocated NF-κB complexes were functional. Selective inhibition of NF-κB, by transfecting CTCL cell lines with a super-repressor form of IκBα, led to apoptosis. We evidenced down-regulation of NF-κB activation and induction of CTCL cell apoptosis in the presence of proteasome 26S inhibitors ALLN, MG132, and bortezomib. Bortezomib at nanomolar concentrations inhibited constitutive activation of NF-κB and induced apoptosis of CTCL cells, with evidence of an upregulation of Bax expression. These results demonstrate the key role played by NF-κB in the resistance of CTCL to apoptosis and suggest that bortezomib might be useful for the treatment of patients with advanced stages of CTCL refractory to standard antineoplastic chemotherapy.


Blood ◽  
2001 ◽  
Vol 97 (4) ◽  
pp. 1056-1062 ◽  
Author(s):  
Christine Brender ◽  
Mette Nielsen ◽  
Keld Kaltoft ◽  
Gitte Mikkelsen ◽  
Qian Zhang ◽  
...  

Abstract A characteristic feature of neoplastic transformation is the loss of external control by cytokines and extracellular matrix of cellular differentiation, migration, and mitogenesis. Because suppressors of cytokine signaling (SOCS) proteins are negative regulators of cytokine-induced signaling, it has been hypothesized that an aberrant SOCS expression plays a role in neoplastic transformation. This study reports on a constitutive SOCS-3 expression in cutaneous T-cell lymphoma (CTCL) cell lines. SOCS-3 protein is constitutively expressed in tumor cell lines (but not in nonmalignant T cells) obtained from affected skin from a patient with mycosis fungoides (MF) and from peripheral blood from a patient with Sezary syndrome (SS). In contrast, constitutive SOCS-3 expression is not found in the leukemic Jurkat T-cell line, the MOLT-4 acute lymphoblastic leukemia cell line, and the monocytic leukemic cell line U937. Expression of SOCS-3 coincides with a constitutive activation of STAT3 in CTCL tumor cells, and stable transfection of CTCL tumor cells with a dominant negative STAT3 strongly inhibits SOCS-3 expression, whereas transfection with wild-type STAT3 does not. Moreover, the reduced SOCS-3 expression in cells transfected with the dominant negative STAT3 is associated with an increased sensitivity to interferon-α (IFN-α). In conclusion, evidence is provided for a constitutive SOCS-3 expression in cancer cells obtained from patients with CTCL. Moreover, the findings indicate that the aberrant expression of SOCS-3 is mediated by a constitutive activation of STAT3 in CTCL cells and affects the IFN-α sensitivity of these cells.


2020 ◽  
Author(s):  
Darci Phillips ◽  
Magdalena Matusiak ◽  
Belén Rivero Gutierrez ◽  
Salil S. Bhate ◽  
Graham L. Barlow ◽  
...  

Anti-PD-1 immunotherapies have transformed cancer treatment, yet the determinants of clinical response are largely unknown. We performed CODEX multiplexed tissue imaging and RNA sequencing on 70 tumor regions from 14 advanced cutaneous T cell lymphoma (CTCL) patients enrolled in a clinical trial of pembrolizumab therapy. Clinical response was not associated with the frequency of tumor-infiltrating T cell subsets, but rather with striking differences in the spatial organization and functional immune state of the tumor microenvironment (TME). After treatment, pembrolizumab responders had a localized enrichment of tumor and CD4+ T cells, which coincided with immune activation and cytotoxic PD-1+ CD4+ T cells. In contrast, non-responders had a localized enrichment of Tregs pre- and post-treatment, consistent with a persistently immunosuppressed TME and exhausted PD-1+ CD4+ T cells. Integrating these findings by computing the physical distances between PD-1+ CD4+ T cells, tumor cells, and Tregs revealed a spatial biomarker predictive of pembrolizumab response. Finally, the chemokine CXCL13 was upregulated in tumor cells in responders post-treatment, suggesting that chemoattraction of PD-1+ CD4+ T cells towards tumor cells facilitates a positive outcome. Together, these data show that T cell topography reflects the balance of effector and suppressive activity within the TME and predicts clinical response to PD-1 blockade in CTCL.


2017 ◽  
Vol 137 (8) ◽  
pp. 1766-1773 ◽  
Author(s):  
Naomi Takahashi ◽  
Makoto Sugaya ◽  
Hiraku Suga ◽  
Tomonori Oka ◽  
Makiko Kawaguchi ◽  
...  

2010 ◽  
Vol 130 (8) ◽  
pp. 2110-2119 ◽  
Author(s):  
Chunlei Zhang ◽  
Baoqiang Li ◽  
Xiang Zhang ◽  
Parul Hazarika ◽  
Bharat B. Aggarwal ◽  
...  

Blood ◽  
2006 ◽  
Vol 108 (11) ◽  
pp. 4686-4686 ◽  
Author(s):  
Andrey Loboda ◽  
Valeria Fantin ◽  
Sophia Randolph ◽  
Justin L. Ricker ◽  
James S. Hardwick ◽  
...  

Abstract Vorinostat is a histone deacetylase inhibitor currently under evaluation in numerous oncology clinical trials. In a Phase IIb trial, oral vorinostat resulted in a 29.7% overall objective response rate in patients (pts) with advanced cutaneous T-cell lymphoma (CTCL) and had an acceptable safety profile. These results prompted efforts to identify gene expression patterns that could elucidate the molecular mechanism of action (MOA), assess exposure to vorinostat and enrich for pts who are likely to respond. In the Phase IIb trial, gene expression profiles were obtained from 24 predose and 30 postdose (2 hr postdose on Day 15) PBMC samples. The gene expression associated with Sezary burden was easily identified in predose samples and consistent with published results. Although the power of this dataset was limited for development of a predose predictor of response, we identified three biologically-relevant pathways that correlated with response and deserve further validation. First, we found a coherent cluster of proliferation/cell cycle genes to be associated with resistance to therapy. This may imply that tumor aggressiveness is an important factor for clinical response. Second, a set of antioxidant genes was upregulated in non-responders. The generation of reactive oxygen species (ROS) is a component of the vorinostat MOA and increased ROS scavenging ability may confer resistance. Finally, cytotoxic cell markers were upregulated in responders and may represent another factor associated with contribution of T and NK cells to response. Each of these 3 patterns, if confirmed, would allow for 20–50% responder enrichment. We observed robust postdose gene expression changes in which ~942 genes exhibited significant regulation (fold-change>2, P<0.01 by paired t-test between predose and postdose samples) regardless of clinical outcome. Treated samples were discriminated from untreated with 87.5% accuracy based on leave one-out-cross-validation (LOOCV) using penalized analysis of microarrays (PAM). To understand the biology, we projected the preclinical postdose signatures derived from acute postdose changes in a panel of human lymphoid cell lines. Overall, 85% of genes significantly regulated by vorinostat in lymphoid cell lines were also regulated in the same direction in PBMC samples from CTCL pts. Thus, most of the observed postdose changes result from acute vorinostat effects on gene expression. The average preclinical postdose signature can be used to predict proximal vorinostat exposure with 90% accuracy. Among the gene expression signatures observed in clinical samples but not in cell lines, two deserve special attention. First, proliferation-associated genes are downregulated postdose and are differentially expressed between responders and non-responders. It may serve as an efficacy biomarker and would allow for 80% accurate discrimination of responders from non-responders in postdose samples based on LOOCV using PAM. Second, cytokines and genes associated with the humoral immune response were downregulated at the same time genes and cytokines associated with a cytotoxic immune response were upregulated. Such changes in the Th1-Th2 balance may reflect part of the MOA for vorinostat, and may be particularly relevant to CTCL, a disease caused by Th2 type skin-homing lymphocytes. Further evaluation of vorinostat in CTCL, including additional validation of gene expression signatures that may predict response, is warranted.


2010 ◽  
Vol 2 (1) ◽  
pp. 8 ◽  
Author(s):  
Edyta Biskup ◽  
Valentina Manfé ◽  
Maria Kamstrup ◽  
Robert Gniadecki

2014 ◽  
Vol 38 (4) ◽  
pp. 516
Author(s):  
Deyan Y. Yosifov ◽  
Kaloyan A. Kaloyanov ◽  
Margarita L. Guenova ◽  
Kamelia Prisadashka ◽  
Maria B. Balabanova ◽  
...  

2021 ◽  
Author(s):  
Garry Nolan ◽  
Darci Phillips ◽  
Magdalena Matusiak ◽  
Belén Gutierrez ◽  
Salil Bhate ◽  
...  

Abstract Anti-PD-1 immunotherapies have transformed cancer treatment, yet the determinants of clinical response are largely unknown. We performed CODEX multiplexed tissue imaging and RNA sequencing on 70 tumor regions from 14 advanced cutaneous T cell lymphoma (CTCL) patients enrolled in a clinical trial of pembrolizumab therapy. Clinical response was not associated with the frequency of tumor-infiltrating T cell subsets, but rather with striking differences in the spatial organization and functional immune state of the tumor microenvironment (TME). After treatment, pembrolizumab responders had a localized enrichment of tumor and CD4+ T cells, which coincided with immune activation and cytotoxic PD-1+ CD4+ T cells. In contrast, non-responders had a localized enrichment of Tregs pre- and post-treatment, consistent with a persistently immunosuppressed TME and exhausted PD-1+ CD4+ T cells. Integrating these findings by computing the physical distances between PD-1+ CD4+ T cells, tumor cells, and Tregs revealed a spatial biomarker predictive of pembrolizumab response. Finally, the chemokine CXCL13 was upregulated in tumor cells in responders post-treatment, suggesting that chemoattraction of PD-1+ CD4+ T cells towards tumor cells facilitates a positive outcome. Together, these data show that T cell topography reflects the balance of effector and suppressive activity within the TME and predicts clinical response to PD-1 blockade in CTCL.


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