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Giorgio Inghirami

Publications and source records attributed to Giorgio Inghirami.

28 records · Page 2Linked to original sources

Identification of oligoclonal CD4 T cells in diffuse large B cell lymphomas.

Human B cell lymphomas often contain CD4 T cells. Here we show that, in diffuse large B cell lymphomas (DLCL), such T cells are oligoclonal. The CDR3 lengths and nucleotide sequences of oligoclonal TCRBV of CD4 T cells in an original and relapsed lymphoma from one patient were compared. Three BV23 sequences were identical (12/17 and 16/16 clones in primary and relapsed lymphomas, respectively), but were absent in CD4 T cells from another patient's DLCL. Two of the repetitive BV23 sequences were found in peripheral blood CD4 T cells (5/17 clones); gamma-irradiated DLCL from this patient stimulated syngeneic BV23 response in CD4 cells (92% of BV23 had the same CDR3 length). Skew in TCRBV representation was observed in CD4 T cells from all the DLCL. One DLCL, with overrepresentation of BV13S1 in CD4 cells, stimulated the same TCR in CD4 cells from three unrelated individuals. These findings support the conclusion that there is clonal selection of CD4 T cells in DLCL.

Adult↗

Differential amplification and overexpression of HER-2/neu, p53, MIB1, and estrogen receptor/progesterone receptor among medullary carcinoma, atypical medullary carcinoma, and high-grade invasive ductal carcinoma of breast.

CONTEXT: Medullary carcinoma (MC) is a special type of breast cancer that has a better prognosis than atypical medullary carcinoma (AMC) and high-grade invasive ductal carcinoma (HGIDC) with prominent lymphocytic infiltrates. What accounts for the different clinical courses of these carcinomas, despite their similar histology, is unknown. To address this issue, we performed a comparative study of amplification and overexpression of HER-2/neu and expression of several other important biochemical markers (p53, MIB1, and estrogen receptor [ER]/progesterone receptor [PR]) in these 3 cancer groups. OBJECTIVE: To evaluate HER-2/neu, p53, MIB1, and ER/PR as markers in the differential diagnosis of MC, AMC, and HGIDC.Design.-Nine cases of MC, 13 cases of AMC, and 16 cases of HGIDC with prominent lymphocytic infiltrates were identified according to strict histologic criteria. All tests were performed on formalin-fixed, paraffin-embedded archival tissues. HER-2/neu gene amplification was examined by fluorescence in situ hybridization using PathVysion HER-2 DNA probes. Expression of HER-2/neu, p53, MIB1, and ER/PR was detected by immunohistochemistry. chi2 and Student t tests were applied for statistical analyses. RESULTS: None of 9 cases of MC examined had either amplification or overexpression of HER-2/neu (0%). In contrast, HER-2/neu amplification was observed in AMC (46%, P <.025) and HGIDC (56%, P <.005). All 3 categories of tumors had similar percentages of expression of p53 (78% of MC, 77% of AMC, and 69% of HGIDC) and MIB1 (89% of MC, 92% of AMC, and 94% of HGIDC). Immunostaining for ER/PR was rarely positive in either MC or AMC, and there were no significant differences of expression of ER/PR between these 2 lesions (P >.05). However, the expression rate of ER/PR (31%/44%) in HGIDC is higher than in both MC (P =.05) and AMC (P =.01). CONCLUSIONS: Medullary carcinoma of breast is distinct from AMC and HGIDC with prominent lymphocytic infiltrates in amplification and overexpression of HER-2/neu. This difference may account for its different clinical and biological behavior, and may potentially aid in diagnosis and management of these groups of patients.

Adult↗

T-cell clonality and myelodysplasia without chromosomal fragility in a patient with features of Seckel syndrome.

Seckel syndrome is a rare autosomal recessive disorder with characteristic craniofacial dysmorphism, skeletal defects, mental and prenatal growth retardation. About 50 cases have been reported in the literature. Hematologic abnormalities with associated chromosomal fragility have been noted in about 15% of the reported cases. We report a patient with Seckel syndrome with myelodysplastic features and clonal T-cells in the bone marrow but no evidence of chromosomal fragility. After 5 years of follow-up, this patient remains asymptomatic without any treatment and with stable peripheral blood counts.

Abnormalities, Multiple↗

NPM-ALK transgenic mice spontaneously develop T-cell lymphomas and plasma cell tumors.

Anaplastic Large Cell Lymphomas (ALCLs) carry translocations in which the anaplastic lymphoma kinase (ALK) gene is juxtaposed to various genes, the most common of which is the NPM/B23 gene. ALK fusion proteins result in the constitutive activation of ALK tyrosine kinase, thereby enhancing proliferation and increasing cell survival. A direct role for NPM-ALK in cellular transformation has been shown in vitro with immortalized cell lines and in vivo using retroviral transfer experiments. Nonetheless, there is no direct evidence of its oncogenic potential in T lymphocytes, which represent the most common target of ALK chimeras. Here, we describe a new mouse model of lymphomagenesis in which human NPM-ALK transcription was targeted to T cells. NPM-ALK transgenic (Tg) mice were born with the expected mendelian distribution, normal lymphoid organs, and a normal number and proportion of helper and suppressor T cells. However, after a short period of latency, all NPM-ALK Tg mice developed malignant lymphoproliferative disorders (mean survival, 18 weeks). NPM-ALK Tg thymic lymphomas displayed a T-cell phenotype characteristic of immature thymocytes and frequently coexpressed surface CD30. A subset of the NPM-ALK Tg mice also developed clonal B-cell plasma cell neoplasms. These tumors arose in peripheral lymphoid organs (plasmacytomas) or within the bone marrow and often led to peripheral neuropathies and limb paralysis. Our NPM-ALK Tg mice are a suitable model to dissect the molecular mechanisms of ALK-mediated transformation and to investigate the efficacy of new therapeutic approaches for the treatment of human ALCL in vivo.

Animals↗

Human rgr: transforming activity and alteration in T-cell malignancies.

We have previously identified the oncogene rgr (ralGDS related) in DNA derived from a rabbit squamous cell carcinoma. Here we describe the identification of the human orthologue of the rabbit rgr gene termed hrgr (human ralGDS related). Four alternatively spliced full-length hrgr transcripts were isolated from normal human testes and liver libraries. Truncation of hrgr confers transforming ability to its cDNA. Using a RT-PCR assay we have been able to detect the expression of an abnormally truncated transcript in several human T-cell lymphoma lines, and in fresh tissue samples of patients with T-cell malignancies. In the DHL cell line, an Anaplastic Large Cell Lymphoma (ALCL) line, a DNA rearrangement was detected within the hrgr gene region. We propose that these T-cell lymphomas, at least in part, owe their malignant phenotypes to genetic alterations of the hrgr gene. These findings also raise the possibility that mutations in the hrgr gene are involved in other malignancies.

3T3 Cells↗

Anaplastic lymphoma kinase (ALK) activates Stat3 and protects hematopoietic cells from cell death.

The anaplastic lymphoma kinase (ALK) gene is characteristically translocated in Anaplastic Large Cell Lymphomas (ALCL) and the juxtaposition of the ALK gene to multiple partners results in its constitutive protein tyrosine kinase activity. We show here that expression of activated ALK induces the constitutive phosphorylation of Stat3 in transfected cells as well as in primary human ALCLs. Furthermore, immunohistochemical studies demonstrate that among distinct human B and T cell lymphomas, activation of Stat3 nuclear translocation is uniquely associated with ALK expression. NPM-ALK also binds and activates Jak3; however, Jak3 is not required for Stat3 activation or for cell transformation in vitro. Moreover, src family kinases are not necessary for NPM-ALK-mediated Stat3 activation or transformation, suggesting that Stat3 may be phosphorylated directly by ALK. To evaluate relevant targets of ALK-activated Stat3, we investigated the regulation of the anti-apoptotic protein Bcl-x(L) and its role in cell survival in NPM-ALK positive cells. NPM-ALK expression caused enhanced Bcl-x(L) transcription, largely mediated by Stat3. Increased expression of Bcl-x(L) provided sufficient anti-apoptotic signals to protect cells from treatment with specific inhibitors of the Jaks/Stat pathway or the Brc-Abl kinase. These studies support a pathogenic mechanism whereby stimulation of anti-apoptotic signals through activation of Stat3 contributes to the successful outgrowth of ALK positive tumor cells.

Anaplastic Lymphoma Kinase↗

S-phase kinase-associated protein 2 expression in non-Hodgkin's lymphoma inversely correlates with p27 expression and defines cells in S phase.

The protein expression of the cyclin-dependent kinase inhibitor p27 is often deregulated in human tumors. In lymphomas the inactivation of p27 is achieved through either increased degradation(1) or sequestration via D cyclins,(2) and p27 protein levels have been shown to have a prognostic significance.(1,3) Recently, S-phase kinase-associated protein 2 (Skp2) has been proved to mediate p27 degradation in normal cells(4-7) and to have oncogenetic properties.(8,9) In this study, B-, T-, and myeloid hematopoietic cell lines and a well-characterized panel of human lymphomas (n = 244) were studied for the expression of Skp2. In human lymphomas, the expression of Skp2 strongly related to the grade of malignancy, being low in indolent tumors and very high in aggressive lymphomas. Moreover, the percentages of Skp2- and S-phase-positive cells, as measured by DNA content or BrdU labeling, strictly matched and closely parallel that of Ki-67 and cyclin A. An inverse correlation between Skp2 and p27 was found in the majority of lymphoma subtypes. Nonetheless, most mantle cell lymphomas and a subset of diffuse large cell lymphomas failed to show this correlation, suggesting that alternative pathway(s) for the regulation of p27 might exist. The detection of Skp2 protein either by flow cytometry or by immunohistochemistry represents a simple method to precisely assess the S phase of lymphomas. The potential diagnostic and prognostic value of Skp2 is discussed.

Biomarkers↗

Amplification of Her-2/neu gene in Her-2/neu-overexpressing and -nonexpressing breast carcinomas and their synchronous benign, premalignant, and metastatic lesions detected by FISH in archival material.

Amplification of Her-2/neu in breast carcinoma is associated with poor prognosis, short disease-free interval, and short survival time in both node-negative and -positive patients. Little is known about the starting point of amplification of Her-2/neu and how it progresses from benign to malignant breast lesions. We attempted to address these questions by evaluating amplification of Her-2/neu in benign, premalignant, and malignant lesions using fluorescence in situ hybridization (FISH). Twenty-six patients with Her-2/neu-overexpressing invasive ductal carcinomas (as judged by strong immunoreactivity with Her-2/neu antibody) and coexisting lesions of ductal hyperplasia (DH), atypical ductal hyperplasia (ADH), ductal carcinoma in situ (DCIS) in the vicinity of the invasive tumor (as judged by review of the hematoxylin and eosin-stained sections), as well as metastatic carcinoma in axillary lymph nodes (mets) were selected for this study. In the primary carcinomas, a close relationship was present between overexpression as detected by immunohistochemistry (IHC) and amplification as demonstrated by FISH (85% concordance). Among these patients, amplification of Her-2/neu in ADH was demonstrated in 7 of 13 cases with ADH, and in DCIS, in 21 of 22 cases with DCIS. There was no amplification in DH or normal ductal epithelium. Significantly, in all 12 patients with synchronous positive axillary lymph nodes, there was concordant amplification of Her-2/neu in the primary and metastatic carcinoma. Amplification was consistent in multifocal metastases, despite morphological heterogeneity in some patients. Amplification ratios increased from ADH to DCIS to invasive carcinoma (P <.01, ADH versus DCIS; P <.05, DCIS versus invasive cancer), but there was no difference in amplification ratios between primary cancers and synchronous axillary metastases (P >.05). We also evaluated Her-2/neu amplification in 21 patients without Her-2/neu overexpression in their primary carcinomas (as judged by absent immunoreactivity with Her-2/neu antibody). Three showed amplification in both primary and metastatic lesions, with a low amplification ratio (approximately 2). One patient had amplification in the primary tumor but not in an axillary metastasis. Two patients exhibited slight amplification in the metastatic carcinoma (ratios 1.6 and 2), but not in their primary cancers. This FISH study indicates that amplification of Her-2/neu can emerge de novo in any stage of the disease process, from ADH to metastatic lesions, but most often appears first in ADH or DCIS. The degree of Her-2/neu amplification increases with progression to invasive carcinoma, there being no further increase in synchronous metastasis. Our data suggest that amplification of Her-2/neu appears to be mainly involved in initiation of breast oncogenesis and that its role in progression of breast cancers is uncertain.

Adult↗

In vivo interference with Skp1 function leads to genetic instability and neoplastic transformation.

Skp1 is involved in a variety of crucial cellular functions, among which the best understood is the formation together with Cul1 of Skp1-cullin-F-box protein ubiquitin ligases. To investigate the role of Skp1, we generated transgenic (Tg) mice expressing a Cul1 deletion mutant (Cul1-N252) able to sequestrate and inactivate Skp1. In vivo interference with Skp1 function through expression of the Cul1-N252 mutant into the T-cell lineage results in lymphoid organ hypoplasia and reduced proliferation. Nonetheless, after a period of latency, Cul1-N252 Tg mice succumb to T-cell lymphomas with high penetrance (>80%). Both T-cell depletion and the neoplastic phenotype of Cul1-N252 Tg mice are largely rescued in Cul1-N252, Skp1 double-Tg mice, indicating that the effects of Cul1-N252 are due to a sequestration of the endogenous Skp1. Analysis of Cul1-N252 lymphomas demonstrates striking karyotype heterogeneity associated with c-myc amplification and c-Myc overexpression. We show that the in vitro expression of the Cul1-N252 mutant causes a pleiotrophic phenotype, which includes the formation of multinucleated cells, centrosome and mitotic spindle abnormalities, and impaired chromosome segregation. Our findings support a crucial role for Skp1 in proper chromosomal segregation, which is required for the maintenance of euploidy and suppression of transformation.

Animals↗

Tubular Carcinoma of the Breast: Immunohistochemical and DNA Flow Cytometric Profile.

Molecular markers of ordinary invasive ductal carcinoma of the breast have been extensively studied and their prognostic significance has been assessed. A common variant of breast cancer, tubular carcinoma, has an excellent prognosis as judged from several clinicopathologic studies. One would assume that tubular carcinomas have "favorable" molecular markers, however, published series of tubular carcinomas do not include molecular markers. We describe the molecular markers of 39 consecutive tubular carcinomas collected between January 1995 and July 1997. DNA ploidy, S-phase, estrogen and progesterone receptor (ER and PR, respectively) expression, and immunoreactivity for MIB-1, p53, and erbB2 were evaluated. Seventy-two percent of tubular carcinomas were DNA diploid, 49% had an S-phase less than 5%, 95% were ER positive, 69% were PR positive, 88% had less than 10% MIB-1-positive cells, 97% were p53 negative, and 97% did not overexpress erbB2 protein. Thus tubular carcinomas exhibit favorable molecular characteristics, which may play a role in their good prognosis.

Journal Article↗