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Biomedical subjects

F Carlomagno

Publications and source records attributed to F Carlomagno.

34 records · Page 2Linked to original sources

Molecular heterogeneity of RET loss of function in Hirschsprung's disease.

The RET proto-oncogene encodes a receptor with tyrosine kinase activity (RET) that is involved in several neoplastic and non-neoplastic diseases. Oncogenic activation of RET, achieved by different mechanisms, is detected in a sizeable fraction of human thyroid tumors, as well as in multiple endocrine neoplasia types 2A and 2B (MEN2A and MEN2B) and familial medullary thyroid carcinoma tumoral syndromes. Germline mutations of RET have also been associated with a non-neoplastic disease, the congenital colonic aganglionosis, i.e. Hirschsprung's disease (HSCR). To analyse the impact of HSCR mutations on RET function, we have introduced into wild-type RET and activated RET(MEN2A) and RET(MEN2B) alleles three missense mutations associated with HSCR. Here we show that the three mutations caused a loss of function of RET when assayed in two model cell systems, NIH 3T3 and PC12 cells. The effect of different HSCR mutations was due to different molecular mechanisms. The HSCR972 (Arg972-->Gly) mutation, mapping in the intracytoplasmic region of RET, impaired its tyrosine kinase activity, while two extracellular mutations, HSCR32 (Ser32-->Leu) and HSCR393 (Phe393-->Leu), inhibited the biological activity of RET by impairing the correct maturation of the RET protein and its transport to the cell surface.

3T3 Cells↗

[Giardia duodenalis infections in pediatrics: our series].

5000 pediatric patients presenting gastrointestinal disturbance (diarrhoea, vomiting, abdominal pain or stypsis) coming from different urban and rural area of Naples (Italy) were evaluated for possible intestinal Giardiasis at the Department of Pediatrician, University of Naples, Italy. The mean age of the patients was 6.4 years and range 0.5-15 years. Giardia duodenalis was searched in 3 different specimens of stools collected every other day, by a microscopic examination by Stoll method. The presence of Giardia duodenalis was correlated with different parameters: life-style, social environment, social level, season, geographic area and subjective symptoms. Statistical differences in the different groups of patients were evaluated by the chi square test. Giardia duodenalis was found in 237/5000 patients (4.7%) of the patients. In nine of them the protozoa was associated with E. vermicularis and in 8 with T. thichiuria e the highest monthly prevalence was observed in November an December. The most frequent symptom was diarrhoea (61.1%). According to these data the Authors can conclude that Giardiasis is a frequent gastrointestinal infection even in children living in temperate areas. This infection is frequently asymptomatic, but can lead to malabsorption and/or to malnutrition, and can be cause of orticaria.

English Abstract↗

Point mutation of the RET proto-oncogene in the TT human medullary thyroid carcinoma cell line.

The RET proto-oncogene encodes a tyrosine-kinase receptor specifically expressed in tissues of neuroectodermal origin. Recently specific point mutations of RET have been demonstrated to be responsible for the Multiple Endocrine Neoplasia type 2A and 2B and Familial Medullary Thyroid Carcinoma syndromes, characterized by the occurrence of medullary thyroid carcinomas. Here we report that a human medullary thyroid carcinoma cell line, the TT cell line, harbours a MEN2A-type mutation, specifically a cysteine to triptophan substitution at the level of the RET codon 634. This mutation is heterozygous and both normal and mutated alleles are expressed. We suggest that the TT cell line could be a useful cell system to investigate the role played by the RET oncogene in the transformation and differentiation of human thyroid C-cells.

Base Sequence↗

Activation of RET as a dominant transforming gene by germline mutations of MEN2A and MEN2B.

Multiple endocrine neoplasia types 2A and 2B (MEN2A and MEN2B) and familial medullary thyroid carcinoma are dominantly inherited cancer syndromes. All three syndromes are associated with mutations in RET, which encodes a receptor-like tyrosine kinase. The altered RET alleles were shown to be transforming genes in NIH 3T3 cells as a consequence of constitutive activation of the RET kinase. The MEN2A mutation resulted in RET dimerization at steady state, whereas the MEN2B mutation altered RET catalytic properties both quantitatively and qualitatively. Oncogenic conversion of RET in these neoplastic syndromes establishes germline transmission of dominant transforming genes in human cancer.

3T3 Cells↗

Cloning of the rat tissue inhibitor of metalloproteinases type 2 (TIMP-2) gene: analysis of its expression in normal and transformed thyroid cells.

We have recently reported that the introduction of the E1A gene of the adenovirus 5 gene into the rat thyroid PC Cl 3 epithelial cell line causes loss of the differentiated thyroid phenotype without the appearance of the typical markers of neoplastic transformation. It is well known that the E1A gene is able either to induce or to repress the transcription of various endogenous cellular genes. In order to characterize the genes involved in the transformation of PC Cl 3 cells by the E1A gene, we have isolated several cDNA clones, whose expression was induced by E1A. One of these clones was found to be the rat homologue of the human tissue inhibitor of metalloproteinase type 2 (TIMP-2) gene. Here we show the complete sequence of the rat TIMP-2. Its homology to the human TIMP-2 is 98% at the amino acid level and, like its human counterpart, the rat TIMP-2 is transcribed in two different mRNAs of 1.0 and 3.5 kb. The expression of TIMP-2, in PC Cl 3 cells, was significantly induced by the E1A gene and also by other oncogenes. Finally TIMP-2 was shown to be significantly overexpressed in human thyroid neoplastic cell lines and some tumoral thyroid samples.

Adenovirus E1A Proteins↗

Frequent RET protooncogene mutations in multiple endocrine neoplasia type 2A.

The occurrence of mutations in the RET protooncogene has been investigated in 12 multiple endocrine neoplasia type 2A families and 18 cases of sporadic thyroid medullary carcinomas and pheochromocytomas. Ten of 12 families showed single base substitutions in the RET protooncogene exons 10 and 11, coding for the extracellular domain of the protein. Tumor tissues from 2 multiple endocrine neoplasia type 2A patients were analyzed at the DNA and ribonucleic acid levels and revealed the same heterozygous mutations found in the peripheral blood lymphocytes. This demonstrates that both the normal and mutant alleles are expressed. No mutations in these exons were detected in the 18 cases of sporadic tumors investigated. These data provided further evidence that the mutated RET protooncogene acts in a dominant fashion and is responsible for the pathogenesis of this syndrome.

Adrenal Gland Neoplasms↗

Evolutionary conservation of the EPS8 gene and its mapping to human chromosome 12q23-q24.

We have previously isolated the coding sequence for a novel substrate for tyrosine kinases, eps8, from NIH3T3 fibroblasts. Eps8 was phosphorylated in vivo by several receptor tyrosine kinases (RTKs) and, upon overexpression, was able to enhance EGFR-mediated mitogenic signaling in NIH3T3 cells. To gain understanding of eps8 function as well as its role in normal and neoplastic proliferation, we cloned the human eps8 coding sequence and studied expression of the human RNA and protein, evolutionary conservation, and chromosomal location. In addition to a previously identified SH3 domain, the predicted amino acid sequence of human eps8 revealed a non-random distribution of prolines, clustered in a way to suggest SH3-binding sites and a putative PH domain. Eps8 was expressed in all epithelial and fibroblastic lines examined and in some, but not all, hematopoietic cells. An essential function of eps8 in cell growth regulation was underscored by its conservation during evolution, where eps8-related sequences were detected as early as in Saccharomyces cerevisiae. Finally, the human EPS8 locus was mapped to chromosome 12q23-q24.

3T3 Cells↗

The human eps15 gene, encoding a tyrosine kinase substrate, is conserved in evolution and maps to 1p31-p32.

Employing an expression cloning approach for tyrosine kinase substrates, we have previously isolated the coding sequence for a novel putative EGFR substrate, eps15, from NIH3T3 fibroblasts. Eps15 displayed a receptor-specific pattern of tyrosine phosphorylation in vivo and was able to transform NIH3T3 cells upon overexpression. To gain understanding of eps15 function as well as its role in normal and neoplastic proliferation, we cloned the human eps15 coding sequence and studied expression of the human RNA and protein, evolutionary conservation, and chromosomal location. The close structural similarity of human eps15 with the murine homologue is indicated by 89% and 90% identity of nucleotide and predicted amino acid sequences, respectively. Using the human eps15 coding sequence as probe, we demonstrate that eps15 is member of a gene family that is highly conserved during evolution. An essential function of eps15 in cell growth regulation is underscored by our observation of ubiquitous expression at the transcript and the protein level in normal and malignant human cells. The human EPS15 locus maps to chromosome 1p31-p32, a region involved in deletion in neuroblastoma, translocations in acute lymphoblastic leukemia, and exhibiting a fragile site.

3T3 Cells↗

Involvement of RET oncogene in human tumours: specificity of RET activation to thyroid tumours.

Non-thyroid neoplasia were analysed by Southern blot of genomic DNA and DNA prepared by reverse transcription and amplification by polymerase chain reaction (RT/PCR) for the activation of the RET oncogene. It is known that the rearrangement of RET occurs in about 10%-20% of human thyroid papillary carcinomas. None of 528 non-thyroid tumours showed rearrangement of the RET proto-oncogene, whereas three out of 30 thyroid papillary carcinomas were positive for RET activation. Therefore the activation of RET seems to be a somatic cell mutation specific to human thyroid carcinomas.

Base Sequence↗

Ret oncogene activation in human thyroid neoplasms is restricted to the papillary cancer subtype.

We have recently reported the activation of a new oncogene in human papillary thyroid carcinomas. This oncogene, papillary thyroid carcinoma (PTC), is a novel rearranged version of the ret tyrosine-kinase protooncogene. Thyroid neoplasms include a broad spectrum of malignant tumors, ranging from well-differentiated tumors to undifferentiated anaplastic carcinomas. To determine the frequency of ret oncogene activation, we analyzed 286 cases of human thyroid tumors of diverse histologic types. We found the presence of an activated form of the ret oncogene in 33 (19%) of 177 papillary carcinomas. By contrast, none of the other 109 thyroid tumors, which included 37 follicular, 15 anaplastic, and 18 medullary carcinomas, and 34 benign lesions, showed ret activation.

Base Sequence↗