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Biomedical subjects

L Palmieri

Publications and source records attributed to L Palmieri.

At least 19 recordsLinked to original sources

Structural dynamics of the mitochondrial ADP/ATP carrier revealed by molecular dynamics simulation studies.

The mitochondrial adenosine diphosphate/adenosine triphosphate (ADP/ATP) carrier has been recently crystallized in complex with its specific inhibitor carboxyatractyloside (CATR). In the crystal structure, the six-transmembrane helix bundle that defines the nucleotide translocation pathway is closed on the matrix side due to sharp kinks in the odd-numbered helices. The closed conformation is further sealed by the loops protruding into the matrix that interact through an intricate network of charge-pairs. To gain insight into its structural dynamics we performed molecular dynamics (MD) simulation studies of the ADP/ATP carrier with and without its cocrystallized inhibitor. The two trajectories sampled a conformational space around two different configurations characterized by distinct salt-bridge networks with a significant shift from inter- to intrarepeat bonding on the matrix side in the absence of CATR. Analysis of the geometrical parameters defining the transmembrane helices showed that even-numbered helices can undergo a face rotation, whereas odd-numbered helices can undergo a change in the wobble angle with a conserved proline acting as molecular hinge. Our results provide new information on the dynamical properties of the ADP/ATP carrier and for the first time yield a detailed picture of a stable carrier conformation in absence of the inhibitor.

Animals↗

Polarization mode dispersion of spun fibers with randomly varying birefringence.

We show analytically how periodic spinning affects the polarization mode dispersion of a fiber in three different practical regimes that are determined by the values of three length scales: the beat length, the birefringence correlation length, and the spin period. We determine in which limits the spin is effective in reducing the mean differential group delay.

Journal Article↗

Identification and metabolic role of the mitochondrial aspartate-glutamate transporter in Saccharomyces cerevisiae.

The malate-aspartate NADH shuttle in mammalian cells requires the activity of the mitochondrial aspartate-glutamate carrier (AGC). Recently, we identified in man two AGC isoforms, aralar1 and citrin, which are regulated by calcium on the external face of the inner mitochondrial membrane. We have now identified Agc1p as the yeast counterpart of the human AGC. The corresponding gene was overexpressed in bacteria and yeast mitochondria, and the protein was reconstituted in liposomes where it was identified as an aspartate-glutamate transporter from its transport properties. Furthermore, yeast cells lacking Agc1p were unable to grow on acetate and oleic acid, and had reduced levels of valine, ornithine and citrulline; in contrast they grew on ethanol. Expression of the human AGC isoforms can replace the function of Agc1p. However, unlike its human orthologues, yeast Agc1p catalyses both aspartate-glutamate exchange and substrate uniport activities. We conclude that Agc1p performs two metabolic roles in Saccharomyces cerevisiae. On the one hand, it functions as a uniporter to supply the mitochondria with glutamate for nitrogen metabolism and ornithine synthesis. On the other, the Agc1p, as an aspartate-glutamate exchanger, plays a role within the malate-aspartate NADH shuttle which is critical for the growth of yeast on acetate and fatty acids as carbon sources. These results provide strong evidence of the existence of a malate-aspartate NADH shuttle in yeast.

Acetates↗

Relationship between iron and protein content of dishes and polyphenol content in accompanying wines.

The traditional combination of wines and dishes is highly complex, elaborated and refined. The aim of this study was to investigate the possible relationship between the chemical composition of wines and dishes that determines their combination. We determined the content of total polyphenols in 56 wines. The content of total proteins, total lipids, kilocalories, sodium, potassium, calcium, copper and zinc were determined in 44 raw foods and 44 dishes. Nine gourmets independently chose three wines for each food. We correlated the content of the chemical constituents of foods with the phenol content of wines combined with each food by the gourmets. A significant positive correlation was obtained between the phenol content of wines and iron (r = 0.81, p < 0.0001) and total protein content (r = 0.66, p < 0.0001) of foods. Nine gourmets composing a second panel chose three wines for each dish. A significant positive correlation was also obtained between the phenol content of wines and iron (r = 0.69, p < 0.0001), total protein (r = 0.50, p < 0.0006) and potassium (r = 0.45, p < 0.002) in dishes combined with wines by the second panel of gourmets. Plant phenols decrease the intestinal absorption of iron and have antioxidant activity in the intestinal tract and elsewhere in the body. These positive effects compensate the negative antinutritional activity toward protein digestion. The traditional combination of wines and dishes appears to be very favorable since wines poor in phenols are combined with dishes poor in iron and/or proteins to minimize their possible antinutritional effects, while phenol-rich wines are combined with dishes rich in iron to decrease iron absorption and prandial peroxidative stress.

Carbohydrates↗

Identification and functional reconstitution of the yeast peroxisomal adenine nucleotide transporter.

The requirement for small molecule transport systems across the peroxisomal membrane has previously been postulated, but not directly proven. Here we report the identification and functional reconstitution of Ant1p (Ypr128cp), a peroxisomal transporter in the yeast Saccharomyces cerevisiae, which has the characteristic sequence features of the mitochondrial carrier family. Ant1p was found to be an integral protein of the peroxisomal membrane and expression of ANT1 was oleic acid inducible. Targeting of Ant1p to peroxisomes was dependent on Pex3p and Pex19p, two peroxins specifically required for peroxisomal membrane protein insertion. Ant1p was essential for growth on medium-chain fatty acids as the sole carbon source. Upon reconstitution of the overexpressed and purified protein into liposomes, specific transport of adenine nucleotides could be demonstrated. Remarkably, both the substrate and inhibitor specificity differed from those of the mitochondrial ADP/ATP transporter. The physiological role of Ant1p in S.cerevisiae is probably to transport cytoplasmic ATP into the peroxisomal lumen in exchange for AMP generated in the activation of fatty acids.

Adenosine Triphosphate↗

Citrin and aralar1 are Ca(2+)-stimulated aspartate/glutamate transporters in mitochondria.

The mitochondrial aspartate/glutamate carrier catalyzes an important step in both the urea cycle and the aspartate/malate NADH shuttle. Citrin and aralar1 are homologous proteins belonging to the mitochondrial carrier family with EF-hand Ca(2+)-binding motifs in their N-terminal domains. Both proteins and their C-terminal domains were overexpressed in Escherichia coli, reconstituted into liposomes and shown to catalyze the electrogenic exchange of aspartate for glutamate and a H(+). Overexpression of the carriers in transfected human cells increased the activity of the malate/aspartate NADH shuttle. These results demonstrate that citrin and aralar1 are isoforms of the hitherto unidentified aspartate/glutamate carrier and explain why mutations in citrin cause type II citrullinemia in humans. The activity of citrin and aralar1 as aspartate/glutamate exchangers was stimulated by Ca(2+) on the external side of the inner mitochondrial membrane, where the Ca(2+)-binding domains of these proteins are localized. These results show that the aspartate/glutamate carrier is regulated by Ca(2+) through a mechanism independent of Ca(2+) entry into mitochondria, and suggest a novel mechanism of Ca(2+) regulation of the aspartate/malate shuttle.

Amino Acid Transport Systems, Acidic↗

Estimating population-based incidence and prevalence of major coronary events.

BACKGROUND: Population-based data on coronary events are generally lacking for large areas, such as at the nation-wide level. While mortality data are currently and exhaustively collected in all developed countries and in a few developing countries, incidence and prevalence are often available only for certain subgroups of the population under study. METHODS: We propose to estimate population-based incidence and prevalence of coronary events through a mathematical method using mortality and survival data as input, and to forecast coronary event occurrence using an age, period and cohort approach. The method reconstructs incidence and prevalence of major coronary events in Italy from 1970 to 1997 and projects trends up to the year 2007 using survival data on coronary events from the Area Friuli-MONICA (MONItoring of CArdiovascular diseases) register. RESULTS: Major coronary event incidence has been decreasing since 1977 for men and since 1974, for women. Conversely, major coronary event prevalence increased up to the end of the 1980s for men and up to the early 1980s for women, and it has been declining thereafter. Major coronary event prevalence results from three main effects: increasing survival, population ageing, and incidence trend. CONCLUSIONS: Availability of national population data, collection of population-based survival data from the MONICA registers and appropriate statistical and mathematical methods help to estimate and project incidence and prevalence trends for major coronary events. This information is essential to plan and implement actions aimed at improving medical care services, and to evaluate the impact of public health interventions as well as spontaneously changing habits. Incidence, prevalence, mortality, projections, ischaemic heart disease, coronary events

Adult↗

[Socioeconomic aspects and cardiovascular risk factors: experience at the Cardiovascular Epidemiologic Observatory].

BACKGROUND: Cardiovascular diseases are more frequent among the poorer social classes of the population. Studies including social and economic factors offer useful information when planning the strategy required in primary prevention. The aim of this investigation was to evaluate the association between socio-economic levels and cardiovascular risk factors in 3198 women and 3218 men aged 35-74 years enrolled for a cross sectional study within the Cardiovascular Epidemiologic Observatory, carried out in 1998 to evaluate the distribution of risk factors and the prevalence of cardiovascular risk conditions. METHODS: The level of education was used to determine the socio-economic status; the distribution of the risk factors and the prevalence of risk conditions were analyzed for the different levels of education. Models of logistic regression were used to evaluate the relation between the socio-economic status and obesity, cigarette smoking, hypertension, and hypercholesterolemia. RESULTS: A higher level of education is significantly protective against both obesity and cigarette smoking. With regard to obesity among males compared to those with a university degree the odds ratio increased to 1.6 for those with an upper secondary education diploma (95% confidence interval--CI 1.09-2.51) and to 3.5 for those without any qualification (95% CI 1.97-6.21). Among women the odds ratio increased to 3.2 (95% CI 1.81-5.81) and to 4.8 (95% CI 2.55-8.98) for the same levels of education. With regard to smoking among males compared to those with a university degree the odds ratio increased to 1.4 for those holding an upper secondary education diploma (95% CI 1.07-1.94) and to 2.3 for those without any qualification (95% CI 1.40-3.68). For men living in central or southern Italy, the odds ratio for cigarette smoking increased to 1.3 (95% CI 1.06-1.57) and to 1.5 (95% CI 1.24-1.82) and the odds ratio for hypercholesterolemia decreased to 0.8 (95% CI 0.62-0.95) and to 0.7 (95% CI 0.58-0.89); with regard to women, living in the same geographic areas the odds ratio for obesity increased to 1.3 (95% CI 1.03-1.65) and to 2.3 (95% CI 1.81-2.83). CONCLUSIONS: In primary prevention it is important to focus the attention on obesity and on smoking habits among the poorer social classes.

Adult↗

Incidence and prevalence of ischemic heart disease in Italy: estimates from the MIAMOD method.

BACKGROUND: When considering large areas, population-based data on coronary events are generally lacking, and such is the case for the national level. While mortality data are currently and exhaustively collected, data regarding the incidence and prevalence are often available only for subgroups of the population. METHODS: The incidence and prevalence of coronary events were estimated using a mathematical method on the basis of official mortality and population data from national statistics and survival data on coronary events from the Area Friuli of the MONICA Project, and forecasted for northern, central and southern Italy. RESULTS: The incidence is described from 1970 to 1994 and projected to the year 2004; prevalence is reported at the years 1990 and 2000. The coronary event incidence has been decreasing since 1977 among men and since 1974, 4 years before the observed mortality decline, among women. The prevalence has continued to increase as a result of three main factors: increasing survival, population aging, and incidence trend. CONCLUSIONS: Incidence and prevalence data distributed for northern, central and southern Italy are essential to plan and implement major projects aimed at improving medical care services and to evaluate the impact of public health interventions and of spontaneously changing habits among the population.

Adult↗

[Identification of individuals with high coronary risk in the Italian population: indications of the Epidemiologic Cardiovascular Observatory].

BACKGROUND: The absolute global coronary risk has recently been introduced as an indicator of the incidence predicted by the main risk factors. It offers numerous options for the treatment of individuals at high risk. The identification of the absolute global coronary risk is produced through the application of functions obtained by longitudinal studies; their adequacy depends on the characteristics of the population from which they were estimated. The aim of this work was to evaluate the impact of the application of the absolute global coronary risk evaluation using the chart of risk proposed to the Italian physicians and to compare it with the results obtained from the application of other risk functions. METHODS: The database of the Osservatorio Epidemiologico Cardiovascolare (OEC), consisting of men and women aged 35-74 years, has been considered as being representative of the Italian population. The individual risk has been computed using the functions and coefficients from the Framingham study, the PROCAM study and the Seven Countries Study-Italy. The prevalence of high risk factors has been estimated on the basis of the recommendations on coronary prevention of the Task Force of the European Societies. RESULTS: The prevalence of high risk factors estimated by the Framingham function is 23.7% among men and 3.8% among women aged 35-74 years. In men aged 35-64 years, this estimated prevalence decreases from 14.2 to 8.7% when the Framingham function is adjusted using the mean value of the risk factors of the OEC, to 5.2% when the PROCAM function is applied, and to 1.1% when the function of the Seven Countries Study-Italy is employed. CONCLUSIONS: The application of the risk function suggested to the Italian physicians implies that more than 2,700,000 men and more than 500,000 women aged 35-74 years are potential candidates for treatment with lipid-lowering drugs. The comparison between the use of different functions in the OEC sample produces high numerical differences. The over-evaluation of the individual at high risk implies significant human and social costs. It is therefore essential to determine risk functions and coefficients derived from recent Italian studies including all age groups, both sexes and taking into account the different geographic characteristics of our country.

Adult↗

Identification of the human mitochondrial oxodicarboxylate carrier. Bacterial expression, reconstitution, functional characterization, tissue distribution, and chromosomal location.

In Saccharomyces cerevisiae, the genes ODC1 and ODC2 encode isoforms of the oxodicarboxylate carrier. They both transport C5-C7 oxodicarboxylates across the inner membranes of mitochondria and are members of the family of mitochondrial carrier proteins. Orthologs are encoded in the genomes of Caenorhabditis elegans and Drosophila melanogaster, and a human expressed sequence tag (EST) encodes part of a closely related protein. Information from the EST has been used to complete the human cDNA sequence. This sequence has been used to map the gene to chromosome 14q11.2 and to show that the gene is expressed in all tissues that were examined. The human protein was produced by overexpression in Escherichia coli, purified, and reconstituted into phospholipid vesicles. It has similar transport characteristics to the yeast oxodicarboxylate carrier proteins (ODCs). Both the human and yeast ODCs catalyzed the transport of the oxodicarboxylates 2-oxoadipate and 2-oxoglutarate by a counter-exchange mechanism. Adipate, glutarate, and to a lesser extent, pimelate, 2-oxopimelate, 2-aminoadipate, oxaloacetate, and citrate were also transported by the human ODC. The main differences between the human and yeast ODCs are that 2-aminoadipate is transported by the former but not by the latter, whereas malate is transported by the yeast ODCs but not by the human ortholog. In mammals, 2-oxoadipate is a common intermediate in the catabolism of lysine, tryptophan, and hydroxylysine. It is transported from the cytoplasm into mitochondria where it is converted into acetyl-CoA. Defects in human ODC are likely to be a cause of 2-oxoadipate acidemia, an inborn error of metabolism of lysine, tryptophan, and hydroxylysine.

Adipates↗

The mitochondrial tricarboxylate carrier: unexpected increased activity in starved silver eels.

The tricarboxylate carrier was purified to homogeneity from liver mitochondria of European eel at the silver and the yellow stage and functionally reconstituted into liposomes. Unexpectedly, the molecular activity of the tricarboxylate carrier obtained from silver eel was about twofold higher than that of the same protein from yellow eel, although eels at the silver stage stop feeding. Parallel changes were found in the activities of the lipogenic enzymes in silver eels. This suggests a functional coordination between all these proteins sequentially involved in hepatic lipogenesis. Cardiolipin added to proteoliposomes strongly stimulated the activity of the purified tricarboxylate carrier from yellow eels, whereas it slightly reduced the activity of the same protein from silver eels. The higher activity of the tricarboxylate carrier from silver eels could therefore be ascribed, at least in part, to a different composition of the lipid domain surrounding the carrier protein, possibly in response to the hormonal alterations accompanying metamorphosis from yellow to silver stage.

Acetyl-CoA Carboxylase↗

Identification in Saccharomyces cerevisiae of two isoforms of a novel mitochondrial transporter for 2-oxoadipate and 2-oxoglutarate.

The nuclear genome of Saccharomyces cerevisiae encodes 35 members of a family of membrane proteins. Known members transport substrates and products across the inner membranes of mitochondria. We have localized two hitherto unidentified family members, Odc1p and Odc2p, to the inner membranes of mitochondria. They are isoforms with 61% sequence identity, and we have shown in reconstituted liposomes that they transport the oxodicarboxylates 2-oxoadipate and 2-oxoglutarate by a strict counter exchange mechanism. Intraliposomal adipate and glutarate and to a lesser extent malate and citrate supported [14C]oxoglutarate uptake. The expression of Odc1p, the more abundant isoform, made in the presence of nonfermentable carbon sources, is repressed by glucose. The main physiological roles of Odc1p and Odc2p are probably to supply 2-oxoadipate and 2-oxoglutarate from the mitochondrial matrix to the cytosol where they are used in the biosynthesis of lysine and glutamate, respectively, and in lysine catabolism.

Adipates↗

Identification and functions of new transporters in yeast mitochondria.

The genome of Saccharomyces cerevisiae encodes 35 putative members of the mitochondrial carrier family. Known members of this family transport substrates and products across the inner membranes of mitochondria. We are attempting to identify the functions of the yeast mitochondrial transporters via high-yield expression in Escherichia coli and/or S. cerevisiae, purification and reconstitution of their protein products into liposomes, where their transport properties are investigated. With this strategy, we have already identified the functions of seven S. cerevisiae gene products, whose structural and functional properties assigned them to the mitochondrial carrier family. The functional information obtained in the reconstituted system and the use of knock-out yeast strains can be usefully exploited for the investigation of the physiological role of individual transporters. Furthermore, the yeast carrier sequences can be used to identify the orthologous proteins in other organisms, including man.

Amino Acid Transport Systems, Basic↗

Yeast mitochondrial carriers: bacterial expression, biochemical identification and metabolic significance.

The genome of Saccharomyces cerevisiae encodes 35 members of a family proteins that transport metabolites and substrates across the inner membranes of mitochondria. They include three isoforms of the ADP/ATP translocase and the phosphate and citrate carriers. At the start of our work, the functions of the remaining 30 members of the family were unknown. We are attempting to identify these 30 proteins by overexpression of the proteins in specially selected host strains of Escherichia coli that allow the carriers to accumulate at high levels in the form of inclusion bodies. The purified proteins are then reconstituted into proteoliposomes where their transport properties are studied. Thus far, we have identified the dicarboxylate, succinate-fumarate and ornithine carriers. Bacterial overexpression and functional identification, together with characterization of yeast knockout strains, has brought insight into the physiological significance of these transporters. The yeast dicarboxylate carrier sequence has been used to identify the orthologous protein in Caenorhabditis elegans and, in turn, this latter sequence has been used to establish the sequence of the human ortholog.

Animals↗

Identification of the mitochondrial carnitine carrier in Saccharomyces cerevisiae.

The mitochondrial carrier protein for carnitine has been identified in Saccharomyces cerevisiae. It is encoded by the gene CRC1 and is a member of the family of mitochondrial transport proteins. The protein has been over-expressed with a C-terminal His-tag in S. cerevisiae and isolated from mitochondria by nickel affinity chromatography. The purified protein has been reconstituted into proteoliposomes and its transport characteristics established. It transports carnitine, acetylcarnitine, propionylcarnitine and to a much lower extent medium- and long-chain acylcarnitines.

Acetylcarnitine↗

Identification of the yeast mitochondrial transporter for oxaloacetate and sulfate.

Saccharomyces cerevisiae encodes 35 members of the mitochondrial carrier family, including the OAC protein. The transport specificities of some family members are known, but most are not. The function of the OAC has been revealed by overproduction in Escherichia coli, reconstitution into liposomes, and demonstration that the proteoliposomes transport malonate, oxaloacetate, sulfate, and thiosulfate. Reconstituted OAC catalyzes both unidirectional transport and exchange of substrates. In S. cerevisiae, OAC is in inner mitochondrial membranes, and deletion of its gene greatly reduces transport of oxaloacetate sulfate, thiosulfate, and malonate. Mitochondria from wild-type cells swelled in isoosmotic solutions of ammonium salts of oxaloacetate, sulfate, thiosulfate, and malonate, indicating that these anions are cotransported with protons. Overexpression of OAC in the deletion strain increased greatly the [(35)S]sulfate/sulfate and [(35)S]sulfate/oxaloacetate exchanges in proteoliposomes reconstituted with digitonin extracts of mitochondria. The main physiological role of OAC appears to be to use the proton-motive force to take up into mitochondria oxaloacetate produced from pyruvate by cytoplasmic pyruvate carboxylase.

Anion Transport Proteins↗

The mitochondrial dicarboxylate carrier is essential for the growth of Saccharomyces cerevisiae on ethanol or acetate as the sole carbon source.

The dicarboxylate carrier (DIC) is an integral membrane protein that catalyses a dicarboxylate-phosphate exchange across the inner mitochondrial membrane. We generated a yeast mutant lacking the gene for the DIC. The deletion mutant failed to grow on acetate or ethanol as sole carbon source but was viable on glucose, galactose, pyruvate, lactate and glycerol. The growth on ethanol or acetate was largely restored by the addition of low concentrations of aspartate, glutamate, fumarate, citrate, oxoglutarate, oxaloacetate and glucose, but not of succinate, leucine and lysine. The expression of the DIC gene in wild-type yeast was repressed in media containing ethanol or acetate with or without glycerol. These results indicate that the primary function of DIC is to transport cytoplasmic dicarboxylates into the mitochondrial matrix rather than to direct carbon flux to gluconeogenesis by exporting malate from the mitochondria. The delta DIC mutant may serve as a convenient host for overexpression of DIC and for the demonstration of its correct targeting and assembly.

Acetates↗