Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UNIPROT:P17931 (galectin-3)
2,860 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Follicular lymphoma (FL) frequently transforms into the more aggressive diffuse large B cell lymphoma (DLBCL-tr), but no protein biomarkers have been identified for predictive or early diagnosis. Gene expression analyses have identified genes changing on transformation but have failed to be reproducible in different studies, reflecting the heterogeneity within the tumor tissue and between tumor samples. Gene expression analyses on Affymetrix Human Genome U133 Plus 2.0 arrays were performed, using flow cytometry sorted tumor cells derived from FL and transformed DLBCL. To identify molecular targets associated with the transformation, subsequent immunohistochemistry (IHC) analyses of the corresponding proteins were performed. Using highly purified cells, this study identified 163 genes, which were significantly deregulated during the transformation in a majority of cases. Among the upregulated transcripts, 13 genes were selected for validation using IHC, based on the availability of commercial antibodies, and galectin-3 and NEK2 proteins specifically identify DLBCL-tr, when compared with FL. We demonstrate that by purifying tumor cells through cell sorting, thereby reducing the heterogeneity due to infiltrating cells, it was possible to identify distinct differences between tumor entities rather than variations due to cellular composition. Galectin-3 and NEK2 both identified a subgroup of DLBCL-tr, and the function of these protein markers also suggests a biological role in the transformation process.
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PMID:Identification of molecular targets associated with transformed diffuse large B cell lymphoma using highly purified tumor cells. 1984 90

The study of human leukocyte antigens, predominantly by monoclonal antibody (mAb) techniques, has become a fundamental part of basic research and clinical investigation. In particular, mAbs have allowed a more precise phenotypic dissection of lymphocyte subsets and have increased our understanding of the mechanisms that regulate humoral immunity and tumour transformation. In the present study we have investigated the expression, in both reactive and neoplastic lymphoid tissues, of a panel of HLDA9 mAbs (TRAIL-R2 (CD262), CCR6 (CD196), HVEM (CD270), Galectin-3 and BAFF-R (CD268)) capable of recognizing their target molecules in paraffin-embedded tissue sections. A series of reactive lymphoid tissues and B and T cell lymphomas (151 cases) were studied, using whole sections and tissue microarrays (T.M.A.). The most interesting results were obtained from the Galectin-3 study. In human lymphomas our data are consistent with the results previously described that showed that Galectin-3 is expressed in anaplastic large cell lymphoma (ALCL). Moreover, we provide additional information of Galetin-3 expression in other lymphoma types. In T cell lymphomas, Galectin-3 was strongly expressed by a significant number of peripheral (PTCL 12/43) and cutaneous T cell lymphomas (CTCL 6/24) while in B cell lymphoma only a small proportion of follicular (FL 2/10) and diffuse large B cell lymphomas (DLBCL 3/10) were positives. Our study encourage further investigations into the potential role that TRAIL-R2, CD196, HVEM, Galectin-3 and BAFF-R proteins may play in lymphocyte development and differentiation, but also constitute an additional tool for the study of lymphoid subpopulations and lymphoproliferative disorders.
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PMID:Immunohistochemical analysis of HLDA9 Workshop antibodies against cell-surface molecules in reactive and neoplastic lymphoid tissues. 2094 16