Search PubMed⌕ Search

Biomedical subjects

A Cama

Publications and source records attributed to A Cama.

At least 91 records · Page 5Linked to original sources

Expression of histone H3 cell cycle-related gene, vimentin and MYC genes in pediatric brain tumors. A preliminary analysis showing the different malignant cell growth potential.

Eleven pediatric brain tumors were studied for the histone H3, Vimentin and MYC gene expression. H3, an S phase cell cycle-related gene (ccr), was found prevalently expressed in tumors with a high mitotic index (MI). Vimentin gene, which contributes to maintaining the cell structure but is also demonstrated to be an early responder gene to growth stimulation was found variously expressed. The different expression of Vimentin gene in the examined samples suggests the active proliferation of the tumor cells. Analysis of MYC gene expression was found increased only in a mesenchymal chondrosarcoma while in other samples MYC mRNA was undetectable. Medulloblastoma, chondrosarcoma, and choroid plexus carcinoma have high S phase H3 gene expression associated with a high MI. Differently an astrocytoma shows a low MI associated with high H3 gene expression. This first preliminary report of H3, Vimentin and MYC gene expression in brain tumors demonstrates that malignant cells are characterized by a different gene expression and different growth potentials.

Adolescent↗

Mutations in the insulin receptor gene in patients with genetic syndromes of insulin resistance and acanthosis nigricans.

Mutations of the insulin receptor gene have been identified in patients with genetic syndromes of insulin resistance associated with acanthosis nigricans. These mutations impair insulin responses by reducing the number of insulin receptors on the surface of target cells, or by reducing the receptor's ability to bind insulin or to undergo insulin-stimulated autophosphorylation, an important step in insulin action. Studies of mutant receptors expressed in transfection systems have contributed to our understanding of the structure-function relationships of the insulin receptor.

Acanthosis Nigricans↗

Detection of mutations in insulin receptor gene by denaturing gradient gel electrophoresis.

Denaturing gradient gel electrophoresis (DGGE) has been used to screen for mutations in the insulin receptor gene. Each of the 22 exons was amplified by the polymerase chain reaction (PCR). For each exon, one of the two PCR primers contained a guanine-cytosine (GC) clamp at its 5' end. The DNA was analyzed by electrophoresis through a polyacrylamide gel containing a gradient of denaturants. Two geometries for the gels were compared; the gradient of denaturants was oriented either parallel or perpendicular to the electric field. The sensitivity of the technique was evaluated by determining whether DGGE succeeded in detecting known mutations and polymorphisms in the insulin receptor gene. With parallel gels, 12 of 16 sequence variants were detected. The use of perpendicular gels increased the sensitivity of detection so that all 16 sequence variants were successfully detected when DNA was analyzed by a combination of perpendicular and parallel gels. Furthermore, DGGE was used to investigate a patient with leprechaunism whose insulin receptor genes had not previously been studied. Two mutant alleles were identified in this patient. The allele inherited from the father had a mutation substituting alanine for Val-28; in the allele inherited from the mother, arginine was substituted for Gly-366.

Alanine↗

N-myc oncogene amplification in a pediatric case of glioblastoma multiforme.

A sample of a primary brain tumor of glial cell origin was surgically removed from a 7-year-old girl. The histopathological analysis showed a heterogeneous tumor containing highly cellular areas composed of small, poorly differentiated cells with frequent mitoses suggestive of a glioblastoma multiforme. There were also areas presenting as features of lower-grade astrocytoma. Strong immunohistochemical staining for glial fibrillar acidic protein was demonstrated, while vimentin, neurofilament, and S-100 protein were all positive in just the astrocytic part of the tumor. The DNA extracted from a fresh tumor sample at diagnosis was processed by Southern blot analysis and hybridized with a 2.0 kb N-myc oncogene probe recognizing the first intron and the second exon of the human gene. A 20-fold amplification of the oncogene was found. The possible role of such a molecular alteration is discussed in light of the clinical presentation and histopathological features.

Biomarkers, Tumor↗

Unusual forms of insulin resistance.

Insulin resistance is an important feature in the pathogenesis of non-insulin-dependent diabetes mellitus. Some rare patients have syndromes associated with a severe form of insulin resistance, usually involving acanthosis nigricans and, in premenopausal females, hyperandrogenism. This review discusses two of the causes of insulin resistance: mutations in the insulin receptor gene and autoantibodies directed against the insulin receptor.

Acanthosis Nigricans↗

A mutation in the tyrosine kinase domain of the insulin receptor associated with insulin resistance in an obese woman.

Insulin resistance is frequently associated with acanthosis nigricans and hyperandrogenism. In patients with type A insulin resistance, this has been shown to be due to genetic defects in insulin receptor function. However, other patients with a similar clinical syndrome have been reported to have a variant of this syndrome, in which assays of insulin receptor function were normal. We have sequenced a portion of the insulin receptor gene in one such patient, a 29-yr-old woman with obesity and insulin resistance. The patient is heterozygous for a mutation substituting isoleucine for methionine at position 1153. Met1153 is located in the intracellular domain of the receptor near the cluster of tyrosine phosphorylation sites at positions 1158, 1162, and 1163. Studies of the mutant receptor expressed in NIH-3T3 cells demonstrated that the Ile1153-mutation impairs the ability of insulin to stimulate autophosphorylation of solubilized insulin receptors. In addition, the mutation impairs the ability of insulin to stimulate receptor tyrosine kinase activity to phosphorylate an artificial substrate [poly(Glu-Tyr)]. It seems likely that this defect in receptor tyrosine kinase activity explains the defect in the ability of the patient's insulin receptors to mediate insulin action in vivo. Furthermore, this patient provides a paradigm in which genetic factors act in concert with other risk factors, such as obesity, to cause clinically important insulin resistance.

Adult↗