Gene/Protein Disease Symptom Drug Enzyme Compound
Pivot Concepts:   Target Concepts:
Query: EC:3.4.21.4 (trypsin)
42,187 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

A comparative study of large cell lymphoma (LCL) (ten B and ten T), Hodgkin's disease (15 cases), and true histiocytic lymphoma (two cases) was undertaken, using formalin-fixed paraffin-embedded tissue sections, a panel of eight antibodies, and one lectin to determine if any particular antibody or immunologic profile could reliably distinguish between these entities. The antibodies used were against Leu-M1, alpha-1-anti-chymotrypsin (alpha-ACT), alpha-anti-trypsin (alpha-AT), lysozyme, kappa, lambda, leukocyte common antigen (LCA), and S-100 protein. The lectin used was peanut agglutinin (PNA). Although Leu-M1 staining was positive in 11 of 15 cases (73%) of Hodgkin's disease, it was also positive in 4 of 10 cases (40%) of T-cell lymphoma, 2 of 10 cases (20%) of B-cell lymphoma, and 1 of 2 cases (50%) of true histiocytic lymphoma. Peanut-agglutinin staining results were similar to Leu-M1. The only staining profile that emerged was the presence of Leu-M1, PNA-, alpha-ACT, and alpha-AT staining in Reed-Sternberg (RS) cells in 11 of 15 cases of Hodgkin's disease. Leu-M1 and its staining pattern is characteristic, but not entirely specific for RS cells, and it was not positive in at least 25% of the cases of Hodgkin's disease in formalin-fixed, paraffin-embedded tissues. The limitations of this antibody and others should be recognized.
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PMID:A comparative marker study of large cell lymphoma, Hodgkin's disease, and true histiocytic lymphoma in paraffin-embedded tissue. 294 20

Histological material was studied in five unselected cases of intestinal large-cell non-Hodgkin's lymphoma, occurring in patients either with previously diagnosed coeliac disease, or with atrophic mucosa at the time of diagnosis. The morphological diagnosis in each case was centroblastic lymphoma: these tumours were composed of large cells with pale nuclei and prominent nucleoli. No phagocytosis was evident, but some cells showed considerable pleomorphism. Polykaryotic giant cells were infrequent. Immunohistochemical staining for lysozyme, alpha-1-anti-trypsin and alpha-1-anti-chymotrypsin failed to demonstrate any of these proteins in the tumour cells, although they were identified in accompanying reactive macrophages. There is thus no evidence for a histiocytic nature in these five cases. The tumours were immunoglobulin-negative. Again, polyclonal immunoglobulin could be demonstrated in reactive (plasma) cells in and near the tumour. The relevance of these immunological markers is discussed. We suggest that these tumours, and possibly some of those reported in a similar situation by other investigators, are in fact lymphocytic in origin. They are probably examples of centroblastic lymphoma, although T-cell lymphoma, rare in the gastrointestinal tract, cannot be ruled out by our immunohistological studies.
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PMID:Large-cell intestinal lymphoma occurring in coeliac disease: morphological and immunohistochemical features. 348 59

T-cell growth factor (TCGF) or interleukin-2 (IL-2), an immunoregulatory lymphokine, is produced by lectin- or antigen-activated mature T lymphocytes and in a constitutive manner by certain T-cell lymphoma cell lines. By means of a molecular clone of human TCGF and DNA extracted from a panel of somatic cell hybrids (rodent cells X normal human lymphocytes), the TCGF structural gene was identified on human chromosome 4. In situ hybridization of the TCGF clone to human chromosomes resulted in significant labeling of the midportion of the long arm of chromosome 4, indicating that the TCGF gene was located at band q26-28. Genomic DNA from a panel of hybrids prepared with HUT-102 B2 cells was examined with the same molecular clone. In this clone of cells, which produces human T-cell leukemia virus, the TCGF gene was also located on chromosome 4 and was apparently not rearranged. The homologous TCGF locus in the domestic cat was assigned to chromosome B1 by using a somatic cell hybrid panel that segregates cat chromosomes. Linkage studies as well as high-resolution G-trypsin banding indicate that this feline chromosome is partially homologous to human chromosome 4.
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PMID:Gene for T-cell growth factor: location on human chromosome 4q and feline chromosome B1. 631 18