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C Cecchi

Publications and source records attributed to C Cecchi.

28 records · Page 2Linked to original sources

The mottled mouse as a model for human Menkes disease: identification of mutations in the Atp7a gene.

Mutations in the Atp7a gene, the mouse homologue of the MNK (ATP7A) gene, have been suggested to be responsible for the mottled phenotype. To date, despite considerable effort, changes associated with the mottled mutations have been detected in only two such mutants. In this study, we identify changes in the level of Atp7a transcript and mutations which could explain the mottled phenotype in nine out of the 10 mutants analysed. The fluorescence-assisted mismatch analysis method used here has proved particularly well suited for mRNA scanning of heterozygous carrier animals, because of its ability to detect mutations even in the presence of an excess of wild-type mRNA. The three new underlying mutations identified at the Atp7a locus include a splice mutation and two missense mutations. While the spectrum of mutations detected in the Atp7a murine gene provides an explanation for at least part of the wide phenotypic variation observed in mottled mutant mice, there is a singular absence of deletions which are associated with a sizeable fraction of human Menkes syndrome cases.

Adenosine Triphosphatases↗

Genomic organization of the mottled gene, the mouse homologue of the human Menkes disease gene.

The mouse homologue of the Menkes gene has been shown to span 120 kb of genomic DNA and to be similar in structure to both its human MNK homologue (ATP7A) and the Wilson disease gene (WD; ATP7B). Conservation of the majority of intron/exon boundaries among the three genes was also observed. The high overall conservation of both the Atp7a gene and the direction of transcription of the Atp7a, Pgk1, and Xnp genes between human and mouse is compatible with the evolution of an ancestral gene subject to strong evolutionary constraints lying within a locally relatively conserved region of the X chromosome.

Adenosine Triphosphatases↗

Alteration of acylphosphatase levels in familial Alzheimer's disease fibroblasts with presenilin gene mutations.

Acylphosphatase (AcPase), an enzyme that modulates the activity of Ca(2+)-ATPase by hydrolysing its phosphorylated moiety, has been found to be significantly higher in cultured skin fibroblasts from donors affected by early onset familial Alzheimer's disease (EOFAD) with PS-1 and PS-2 gene mutations. Of the two known isoenzymes of acylphosphatase, only the erythrocyte one accounts for the total increase in activity. No relevant alteration was observed in phosphotyrosine phosphatase activity (PTPase), in Ca(2+)-ATPase and Na+, K(+)-ATPase activities of the same cells as compared to age-matched controls. This finding could suggest a possible explanation for the calcium-dependent biochemical alterations previously described in Alzheimer's disease fibroblasts.

Acid Anhydride Hydrolases↗

Crystallisation and preliminary X-ray analysis of the 'common-type' acylphosphatase.

Single crystals of a 'common-type' acylphosphatase from bovine testis have been grown. Crystals belong to space group C2 and have cell dimensions a = 64.6 A, b = 36.5 A, c = 45.2 A and beta = 104.8 and contain one monomer per asymmetric unit. The crystals diffract better than 2.0 A resolution and are well suited for an X-ray structure determination.

Acid Anhydride Hydrolases↗

Setting up and statistical evaluation of a new haemoglobin assay.

A new method for the determination of haemoglobin concentration in human whole blood has been devised. The assay takes advantage of the lysis of erythrocytes that occurs when blood penetrates the pores of a microporous membrane by a strong capillary effect. The released haemoglobin reacts with the reagents previously dried on the membrane, diffuses through the pores of the membrane and produces a uniform coloured spot whose reflectance at 556 nm can be evaluated at the side to that of application of the sample. In the experimental conditions used by authors, a linear relationship was obtained when the reciprocal reflectance was plotted against the haemoglobin concentration. Data obtained by the reflectometric method were compared with reference values on the same samples from centralized laboratories. Statistical analysis gave a correlation coefficient of 0.985 and only 4% of all haemoglobin determinations were outside the 95% confidence interval. No interference was observed by haematocrit, erythrocyte count, mean corpuscular volume or mean corpuscular haemoglobin concentration and leukocyte count. This method proved to be useful for rapid, accurate and precise assay of total haemoglobin on both capillary and venous blood.

Blood Cell Count↗

Modification of invasion and differentiation in human melanoma cell clones.

In an attempt to define the role of plasminogen activator in invasiveness and differentiation of human melanoma cells, the modulation of these parameters was studied in two melanoma clones characterized by marked differences in their basal features, using 12-O-tetradecanoyl-phorbol-13-acetate (TPA) and retinoic acid, two differentiation inducers, and doxorubicin, a cytotoxic agent. TPA induced only slight reductions, whereas retinoic acid and doxorubicin caused an increase in invasiveness, enzymatic activity and differentiation in the clone showing low invasivity, low urokinase-type plasminogen activator levels and high differentiation. In contrast, in the clone showing high invasivity, high urokinase-type plasminogen activator levels and low differentiation it was found that: TPA was ineffective; retinoic acid induced a reduction of plasminogen activator but no modifications of invasiveness and differentiation; doxorubicin caused a decrease in invasiveness and plasminogen activator activity but no modification of morphological features. The different behaviour of the two clones thus could be related to the basal features of the clones. The results reported here indicate that in the presence of these drugs the associations between invasiveness and urokinase-type plasminogen activator activity and between invasiveness and differentiation are lost. Drug treatment therefore significantly affected the features of the clone characterized by low biological aggressiveness (high differentiation, low invasiveness), whereas the highly aggressive clone did not show a consistent response to drug treatment.

Cell Survival↗

Expression of human acylphosphatase in Escherichia coli affects intracellular calcium levels.

In vitro experiments demonstrated the ability of acylphosphatase to hydrolyze the phosphorylated intermediate that is formed during the activity of Na+, K(+)- and Ca(2+)-ATPases of mammalian cells membranes. In order to investigate the effect of this enzyme on intracellular cation levels, a synthetic gene for human muscle acylphosphatase has been expressed in E. coli strains BL21 and JM101. Intracellular total steady-state calcium concentration, as measured by isotopic exchange, was significantly higher in transformed cells as compared to controls and the rising was dependent on the level of acylphosphatase expression. Accordingly also free intracellular calcium concentration, as measured by Fura-2 fluorescence, increased in transformed cells. On the other hand, phosphate levels were not affected by the expression of acylphosphatase, while sodium and rubidium levels increase in transformed cells. Intracellular pH resulted to be slightly affected by the expression of acylphosphatase, cytoplasm of transformed JM101 bacteria being more alkaline (pH 7.45) as compared to control cells (pH 7.40). On the basis of these results, it can be suggested that acylphosphatase acts in vivo by regulating the cation transport in E. coli.

Acid Anhydride Hydrolases↗

Cerebral soluble ubiquitin is increased in patients with Alzheimer's disease.

A study concerning the amount of soluble ubiquitin in different cortical and subcortical regions of brains from patients with Alzheimer's disease compared to the amount in normal brains is presented. Several samples from 9 brain regions were processed and analyzed by liquid chromatography. In almost all the investigated cerebral regions the soluble ubiquitin content was significantly higher in pathologic tissue than in normal tissue. The primary structure of ubiquitin isolated from brain tissue affected by Alzheimer's degenerative processes was determined and resulted to be identical to normal human ubiquitin. These findings, together with the detection of polyubiquitinated proteins in paired helical filaments of neurofibrillary tangles described by several authors, suggest that an impairment of the process of intracellular, ubiquitin-dependent proteolysis might play an important role in the pathogenesis of this neurodegenerative disease. On the other hand, the expression of the correct polypeptide sequence in brain with Alzheimer's disease seems to exclude a mutation of the polyubiquitin gene as a cause of these alterations.

Adult↗

Purification, kinetic properties and primary structure of bovine erythrocyte acylphosphatase.

An erythrocyte isoenzyme of acylphosphatase was purified from bovine red cells. The protein was characterized as regards the kinetic parameters and amino acid sequence. A simple and rapid sequencing strategy, based on a few experiments, was used for reconstructing the primary structure of the enzyme, since the purification procedure gave a very low yield. The length of the polypeptide chain is 100 residues. Comparison with the analogous human isoenzyme indicates that the primary structure is about 90% conserved. The presence of two additional residues at the acetylated N-terminus confirms the hypervariability for this region found in other acylphosphatases.

Acid Anhydride Hydrolases↗