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Biomedical subjects

G De Bellis

Publications and source records attributed to G De Bellis.

At least 19 recordsLinked to original sources

Algorithm for automatic genotype calling of single nucleotide polymorphisms using the full course of TaqMan real-time data.

Single nucleotide polymorphisms (SNPs) are often determined using TaqMan real-time PCR assays (Applied Biosystems) and commercial software that assigns genotypes based on reporter probe signals at the end of amplification. Limitations to the large-scale application of this approach include the need for positive controls or operator intervention to set signal thresholds when one allele is rare. In the interest of optimizing real-time PCR genotyping, we developed an algorithm for automatic genotype calling based on the full course of real-time PCR data. Best cycle genotyping algorithm (BCGA), written in the open source language R, is based on the assumptions that classification depends on the time (cycle) of amplification and that it is possible to identify a best discriminating cycle for each SNP assay. The algorithm is unique in that it classifies samples according to the behavior of blanks (no DNA samples), which cluster with heterozygous samples. This method of classification eliminates the need for positive controls and permits accurate genotyping even in the absence of a genotype class, for example when one allele is rare. Here, we describe the algorithm and test its validity, compared to the standard end-point method and to DNA sequencing.

Algorithms↗

Multiplex polymerase chain reaction and ligation detection reaction/universal array technology for the traceability of genetically modified organisms in foods.

A multiplex polymerase chain reaction (PCR) system was developed for the simultaneous detection of target sequences in genetically modified soybean (Roundup Ready) and maize (MON810, Bt176, Bt11, and GA21). Primer pairs were designed to amplify the junction regions of the transgenic constructs analyzed and the endogenous genes of soybean (lectin) and maize (zein) were included as internal control targets to assess the efficiency of all reactions. This multiplex PCR has constituted the basis for an efficient platform for genetically modified organism traceability based on microarray technology. In particular, the ligation detection reaction combined to a universal array approach, using the multiplex PCR as target, was applied. High specificity and sensitivity were obtained.

DNA, Plant↗

Analysis of DNA microarrays by non-destructive fluorescent staining using SYBR green II.

A simple, non-destructive procedure is described to determine the quality of DNA arrays before they are used. It consists of a preliminary staining step of the DNA microarray by using SYBR green II, a fluorophore with specific affinity for ssDNA, followed by a laser scan analysis. The surface quality, integrity and homogeneity of each DNA spot of the array can thus be assessed. After this preliminary control, which may avoid further analytical steps that lead to the waste of precious biological samples, a fully reversible staining procedure is performed that produces an array ready for subsequent use.

DNA↗

Association of early-onset Alzheimer's disease with an interleukin-1alpha gene polymorphism.

Overexpression of the pluripotent cytokine interleukin-1 (IL-1) by microglial cells correlates with formation of neuritic beta-amyloid plaques in Alzheimer's disease (AD). We evaluated polymorphisms in the genes coding for the IL-1alpha, IL-1beta, and IL-1 receptor antagonist cytokines, and tested their association with the occurrence and age at onset of sporadic AD. We found a strong association between the IL-1A T/T genotype and AD onset before 65 years of age (odds ratio, 4.86), with carriers of this genotype showing an onset of disease 9 years earlier than IL-1A C/C carriers. A weaker association with the age at onset was also shown for the IL-1B and IL-1RN genes. These data suggest either a direct effect of the IL-1 gene family, mainly IL-1A, on the clinical onset of AD, or a linkage dysequilibrium with an unknown locus relevant to AD on chromosome 2.

Adult↗

Application of capillary electrophoresis at low pH to oligonucleotides quality control.

A method for oligonucleotides analysis by using capillary electrophoresis at low pH in free solution is described. It may be considered an alternative to classical analytical techniques which use basic buffers and require the presence of sieving media to separate oligonucleotides as a function of their length. On the contrary, at low pH oligo nucleotides can be separated only depending on their base composition. A large set of samples consisting of 72 synthetic oligonucleotides bearing a 5'-alkylamine moiety and designed for HLA genotyping were analysed. The quality of these synthetic oligos was easily assessed, and a single base difference in oligonucleotides of equal sequence was detected. The results suggest the application of this method to the emerging field of mutation detection and single nucleotide polymorfism analysis.

DNA Mutational Analysis↗

Sequence and gene content in 35 kb genomic clone mapping in the human Xq27.1 region.

This paper presents detailed analysis of the entire sequence of a cosmid clone, 26H7, containing 35 kb of human DNA. This cosmid resides on the q27.1 region of the human X chromosome between, DXS1232 and DXS119 loci. Novel potential small exons were detected for which conventional gene identification strategies (Northern blot analysis and extensive cDNA library screening) proved to be inefficient. Of the standard repetitive elements we found: 8 Alu's making up 6.2% of the sequence; 10 MIR segments (4.1%); 5 LINE1 elements (4.8%), 3 MIR2 (1.0%); 2 MLT (2.9%), and 1 MSTA (0.7%) representing about 20% of the total sequence. The overall GC content was rather low, only 42% and no CpG island was detected using rare restriction enzymes. However, a CpG-rich region was identified. Computer aided analysis of the sequence inferred the presence of three possible genes: one of them was found to be homologous to the U7 RNA family elements; a second is reported in this paper, however at the moment no significant homology has been found in the data bank. The third predicted gene has not as yet been found to be detectable by RT-PCR. We also report in this paper the identification of X-chromosome specific repeated sequences.

Amino Acid Sequence↗

Multiple G6PD mutations are associated with a clinical and biochemical phenotype similar to that of G6PD Mediterranean.

Glucose-6-phosphate dehydrogenase (G6PD) deficiency, one of the most common red cell abnormalities, is characterized by a wide clinical, biochemical, and molecular heterogeneity. In this study we have determined the molecular basis of G6PD deficiency in a sample of 70 male subjects, originating from different parts of Italy, who all shared a clinical and biochemical phenotype identical or very similar to that of G6PD Mediterranean, the most common variant in Italy. In 59 cases (84%) we found the mutation 563 C --> T, previously known to be underlying the G6PD Mediterranean and the two polymorphic variants G6PD Cagliari and G6PD Sassari. From the remaining 11 we amplified the entire coding region of G6PD in 8 different fragments and subjected them to nonradioactive single-strand conformation analysis. Direct sequencing was then performed on abnormal fragments. By this approach we found six cases (8.5%) with 1360 G --> A mutation (G6PD Union) and two cases (2.8%) with 1376 G --> C (G6PD Cosenza). In the remaining three samples we found two other mutations: 1342 A --> G (two cases, 2.8%) and 1052 G --> T (one case, 1.4%). These two molecular defects have never been described before and were designated by us as G6PD S. Antioco and G6PD Partenope, respectively. Haplotype analysis suggested that all the non-Mediterranean mutations occurred independently on a normal G6PD allele. This study shows that the G6PD Union mutation has a high polymorphic frequency in the Italian population and that the genetic heterogeneity of G6PD Mediterranean-like variants is higher at the molecular level than expected from biochemical characterization.

Base Sequence↗

Solid phase purification and SSCP analysis of amplified genomic DNA by capillary electrophoresis.

Detection and identification of point mutations in genomic DNA has proven increasingly important in biomedical research. A variety of methods for the analysis of single base substitutions have been proposed among which Single Strand Conformational Polymorphism (SSCP) quickly gained success due to its simplicity. In this work we present an analytical on-line tool which combines the ease of solid phase purification of amplified genomic DNA, the simplicity of SSCP and the significant potential advantages offered by capillary electrophoresis (CE).

DNA Mutational Analysis↗

Fluorescence-based automated DNA sequencing by limited primer labeling.

The applicability of automated DNA sequencing systems to sequencing strategies that require a large number of primers is limited by the necessity for expensive fluorescence-labeled oligonucleotides. Here we present a simple procedure that allows the use of unlabeled oligonucleotides to perform fluorescence-based DNA sequencing. This method is based on a limited primer extension that incorporates three deoxynucleotides, one of which carries a fluorescent moiety. The elongated fluorescent primer is then used in a standard T7 sequencing reaction. This labeling procedure is both economical and straightforward and offers a valid alternative to current fluorescence-labeling protocols. Results of this method with different DNA templates demonstrate the reliability of the protocol.

DNA Primers↗

Anion-exchange HPLC analysis of biotinylated oligonucleotides.

Biotinylated oligonucleotides combined with streptavidin-coated magnetic beads are commonly used in current molecular biology. Their quality and the level of incorporated biotin are essential for yielding good results in either solid-phase DNA sequencing or solid-phase purification procedures. This paper presents a very simple analytical test using anion-exchange HPLC and avidin to ascertain the quality of biotinylated oligonucleotides and to predetermine their ability to bind to avidin, which is a prerequisite for functionality in some solid-phase methods.

Avidin↗

Molecular characterisation of an Italian G6PD variant responsible for chronic non-spherocytic haemolytic anaemia.

An Italian deficient G6PD variant associated with chronic non-spherocytic haemolytic anaemia (CNSHA) was biochemically characterised and studied at molecular level. Single-strand conformation polymorphism (SSCP) analysis led to the identification of an abnormal migration pattern of an amplified fragment encompassing exons 10 and 11 of the G6PD gene. Sequence analysis of both strands using an automated fluorescent DNA sequencer revealed a G-->A transition at nt. position 1246 in exon 10. A C-->T substitution at nt. 1311 in exon 11 was also found, which has already been described as a silent mutation common in Caucasians. The 1246 G-->A mutation has been described only in a Japanese subject with CNSHA (G6PD Tokyo) not associated with the 1311T polymorphism, suggesting that this mutation may have arisen independently in Europe and Asia.

Adult↗

Mixed-mode fluorescent DNA sequencing.

Fluorescence-based, automated DNA sequences represent one of the major advances in recent molecular biology. Two main technologies have been developed in this field: the single-label/four-lane system and the four-label/one-lane system. The following present the use of single-label-sequencing chemistry, which resembles traditional radioactive DNA sequencing, using the four-label system ABI 373A that expands its flexibility and obtains data that are immediately interpretable without software manipulation. This method has been named mixed-mode fluorescent DNA sequencing. Here we show one of its possible applications in molecular genetic analysis.

Autoanalysis↗

Detection of human chromosomes in somatic cell hybrids by PCR analysis.

The detection of human chromosomes in somatic cell hybrids is usually made by chromosomal analysis, Southern blot analysis with human probes, and starch-gel electrophoresis of isoenzymes. We describe here a new, quick, and very efficient method to detect human chromosomes in somatic cell hybrids between human and rodent (rat and mouse) cells. The method is based on the polymerase chain reaction to promote amplification of human DNA, using primers derived from localized genes or DNA fragments from each human chromosome.

Animals↗

Introduction of magnetic beads in diagnosis: a simple and rapid method to detect mutations of beta globin gene, directly amplified from blood.

In this communication we present the results obtained by the use of magnetic beads in diagnosis, for the identification of genetic variants at the molecular level by sequencing, in comparison with the more laborious method of the production of ssDNA with asymmetric PCR. We compared the two techniques studying variants of beta globin gene: Hb Abruzzo [beta 143 (H21) His -> Arg] and Hb D Los Angeles [beta 121 (GH4) Glu -> Gln].

Base Sequence↗